[{"publication":"The American Journal of Clinical Nutrition","citation":{"mla":"Schwingshackl, Lukas, et al. “Reply to Khan et Al.” <i>The American Journal of Clinical Nutrition</i>, 2020, pp. 917–18, doi:<a href=\"https://doi.org/10.1093/ajcn/nqaa006\">10.1093/ajcn/nqaa006</a>.","ama":"Schwingshackl L, Neuenschwander M, Hoffmann G, Buyken A, Schlesinger S. Reply to Khan et al. <i>The American Journal of Clinical Nutrition</i>. Published online 2020:917-918. doi:<a href=\"https://doi.org/10.1093/ajcn/nqaa006\">10.1093/ajcn/nqaa006</a>","bibtex":"@article{Schwingshackl_Neuenschwander_Hoffmann_Buyken_Schlesinger_2020, title={Reply to Khan et al.}, DOI={<a href=\"https://doi.org/10.1093/ajcn/nqaa006\">10.1093/ajcn/nqaa006</a>}, journal={The American Journal of Clinical Nutrition}, author={Schwingshackl, Lukas and Neuenschwander, Manuela and Hoffmann, Georg and Buyken, Anette and Schlesinger, Sabrina}, year={2020}, pages={917–918} }","apa":"Schwingshackl, L., Neuenschwander, M., Hoffmann, G., Buyken, A., &#38; Schlesinger, S. (2020). Reply to Khan et al. <i>The American Journal of Clinical Nutrition</i>, 917–918. <a href=\"https://doi.org/10.1093/ajcn/nqaa006\">https://doi.org/10.1093/ajcn/nqaa006</a>","ieee":"L. Schwingshackl, M. Neuenschwander, G. Hoffmann, A. Buyken, and S. Schlesinger, “Reply to Khan et al.,” <i>The American Journal of Clinical Nutrition</i>, pp. 917–918, 2020, doi: <a href=\"https://doi.org/10.1093/ajcn/nqaa006\">10.1093/ajcn/nqaa006</a>.","chicago":"Schwingshackl, Lukas, Manuela Neuenschwander, Georg Hoffmann, Anette Buyken, and Sabrina Schlesinger. “Reply to Khan et Al.” <i>The American Journal of Clinical Nutrition</i>, 2020, 917–18. <a href=\"https://doi.org/10.1093/ajcn/nqaa006\">https://doi.org/10.1093/ajcn/nqaa006</a>.","short":"L. Schwingshackl, M. Neuenschwander, G. Hoffmann, A. Buyken, S. Schlesinger, The American Journal of Clinical Nutrition (2020) 917–918."},"date_created":"2021-11-25T12:11:02Z","type":"journal_article","department":[{"_id":"17"},{"_id":"22"},{"_id":"571"}],"status":"public","title":"Reply to Khan et al.","year":"2020","author":[{"last_name":"Schwingshackl","first_name":"Lukas","full_name":"Schwingshackl, Lukas"},{"last_name":"Neuenschwander","first_name":"Manuela","full_name":"Neuenschwander, Manuela"},{"first_name":"Georg","last_name":"Hoffmann","full_name":"Hoffmann, Georg"},{"id":"65985","full_name":"Buyken, Anette","first_name":"Anette","last_name":"Buyken"},{"full_name":"Schlesinger, Sabrina","last_name":"Schlesinger","first_name":"Sabrina"}],"publication_identifier":{"issn":["0002-9165","1938-3207"]},"publication_status":"published","date_updated":"2022-01-06T06:57:45Z","page":"917-918","_id":"27803","language":[{"iso":"eng"}],"user_id":"61597","doi":"10.1093/ajcn/nqaa006"},{"page":"164-172","language":[{"iso":"eng"}],"_id":"27806","user_id":"61597","doi":"10.1017/s0007114520000665","status":"public","year":"2020","title":"Sugar intake among German adolescents: trends from 1990 to 2016 based on biomarker excretion in 24-h urine samples","author":[{"full_name":"Perrar, Ines","last_name":"Perrar","first_name":"Ines"},{"full_name":"Gray, Nicola","last_name":"Gray","first_name":"Nicola"},{"first_name":"Gunter G.","last_name":"Kuhnle","full_name":"Kuhnle, Gunter G."},{"full_name":"Remer, Thomas","last_name":"Remer","first_name":"Thomas"},{"id":"65985","first_name":"Anette","last_name":"Buyken","full_name":"Buyken, Anette"},{"last_name":"Alexy","first_name":"Ute","full_name":"Alexy, Ute"}],"publication_identifier":{"issn":["0007-1145","1475-2662"]},"publication_status":"published","date_updated":"2022-01-06T06:57:45Z","date_created":"2021-11-25T12:13:11Z","type":"journal_article","department":[{"_id":"17"},{"_id":"22"},{"_id":"571"}],"publication":"British Journal of Nutrition","citation":{"bibtex":"@article{Perrar_Gray_Kuhnle_Remer_Buyken_Alexy_2020, title={Sugar intake among German adolescents: trends from 1990 to 2016 based on biomarker excretion in 24-h urine samples}, DOI={<a href=\"https://doi.org/10.1017/s0007114520000665\">10.1017/s0007114520000665</a>}, journal={British Journal of Nutrition}, author={Perrar, Ines and Gray, Nicola and Kuhnle, Gunter G. and Remer, Thomas and Buyken, Anette and Alexy, Ute}, year={2020}, pages={164–172} }","ama":"Perrar I, Gray N, Kuhnle GG, Remer T, Buyken A, Alexy U. Sugar intake among German adolescents: trends from 1990 to 2016 based on biomarker excretion in 24-h urine samples. <i>British Journal of Nutrition</i>. Published online 2020:164-172. doi:<a href=\"https://doi.org/10.1017/s0007114520000665\">10.1017/s0007114520000665</a>","mla":"Perrar, Ines, et al. “Sugar Intake among German Adolescents: Trends from 1990 to 2016 Based on Biomarker Excretion in 24-h Urine Samples.” <i>British Journal of Nutrition</i>, 2020, pp. 164–72, doi:<a href=\"https://doi.org/10.1017/s0007114520000665\">10.1017/s0007114520000665</a>.","short":"I. Perrar, N. Gray, G.G. Kuhnle, T. Remer, A. Buyken, U. Alexy, British Journal of Nutrition (2020) 164–172.","chicago":"Perrar, Ines, Nicola Gray, Gunter G. Kuhnle, Thomas Remer, Anette Buyken, and Ute Alexy. “Sugar Intake among German Adolescents: Trends from 1990 to 2016 Based on Biomarker Excretion in 24-h Urine Samples.” <i>British Journal of Nutrition</i>, 2020, 164–72. <a href=\"https://doi.org/10.1017/s0007114520000665\">https://doi.org/10.1017/s0007114520000665</a>.","ieee":"I. Perrar, N. Gray, G. G. Kuhnle, T. Remer, A. Buyken, and U. Alexy, “Sugar intake among German adolescents: trends from 1990 to 2016 based on biomarker excretion in 24-h urine samples,” <i>British Journal of Nutrition</i>, pp. 164–172, 2020, doi: <a href=\"https://doi.org/10.1017/s0007114520000665\">10.1017/s0007114520000665</a>.","apa":"Perrar, I., Gray, N., Kuhnle, G. G., Remer, T., Buyken, A., &#38; Alexy, U. (2020). Sugar intake among German adolescents: trends from 1990 to 2016 based on biomarker excretion in 24-h urine samples. <i>British Journal of Nutrition</i>, 164–172. <a href=\"https://doi.org/10.1017/s0007114520000665\">https://doi.org/10.1017/s0007114520000665</a>"},"abstract":[{"lang":"eng","text":"<jats:title>Abstract</jats:title><jats:p>Trend analyses based on dietary records suggest decreases in the intakes of total sugar (TS), added and free sugar since 2005 among children and adolescents in Germany. In terms of age trends, TS intake decreased with increasing age. However, self-reported sugar intake in epidemiological studies is criticised, as it may be prone to bias due to selective underreporting. Furthermore, adolescents are more susceptible to underreporting than children. We thus analysed time and age trends in urinary fructose excretion (FE), sucrose excretion (SE) and the sum of both (FE + SE) as biomarkers for sugar intake among 8·5–16·5-year-old adolescents. Urinary sugar excretion was measured by UPLC-MS/MS in 997 24-h urine samples collected from 239 boys and 253 girls participating in the Dortmund Nutritional and Anthropometric Longitudinally Designed (DONALD) study cohort between 1990 and 2016. Time and age trends of log-transformed FE, SE and FE + SE were analysed using polynomial mixed-effects regression models. Between 1990 and 2016, FE as well as FE + SE decreased (linear time trend: <jats:italic>P</jats:italic> = 0·0272 and <jats:italic>P</jats:italic> &lt; 0·0001, respectively). A minor increase in excretion during adolescence was confined to FE (linear age trend: <jats:italic>P</jats:italic> = 0·0017). The present 24-h excretion measurements support a previously reported dietary record-based decline in sugar intake since 2005. However, the previously seen dietary record-based decrease in TS from childhood to late adolescence was not confirmed by our biomarker analysis, suggesting a constant sugar intake for the period of adolescence.</jats:p>"}]},{"type":"journal_article","department":[{"_id":"17"},{"_id":"22"},{"_id":"571"}],"date_created":"2021-11-25T12:13:58Z","abstract":[{"text":"<jats:p>There is no question that elevated postprandial glycemia is a significant driver of common chronic diseases globally [...]</jats:p>","lang":"eng"}],"publication":"Nutrients","citation":{"ieee":"J. Brand-Miller and A. Buyken, “The Relationship between Glycemic Index and Health,” <i>Nutrients</i>, Art. no. 536, 2020, doi: <a href=\"https://doi.org/10.3390/nu12020536\">10.3390/nu12020536</a>.","apa":"Brand-Miller, J., &#38; Buyken, A. (2020). The Relationship between Glycemic Index and Health. <i>Nutrients</i>, Article 536. <a href=\"https://doi.org/10.3390/nu12020536\">https://doi.org/10.3390/nu12020536</a>","chicago":"Brand-Miller, Jennie, and Anette Buyken. “The Relationship between Glycemic Index and Health.” <i>Nutrients</i>, 2020. <a href=\"https://doi.org/10.3390/nu12020536\">https://doi.org/10.3390/nu12020536</a>.","short":"J. Brand-Miller, A. Buyken, Nutrients (2020).","mla":"Brand-Miller, Jennie, and Anette Buyken. “The Relationship between Glycemic Index and Health.” <i>Nutrients</i>, 536, 2020, doi:<a href=\"https://doi.org/10.3390/nu12020536\">10.3390/nu12020536</a>.","bibtex":"@article{Brand-Miller_Buyken_2020, title={The Relationship between Glycemic Index and Health}, DOI={<a href=\"https://doi.org/10.3390/nu12020536\">10.3390/nu12020536</a>}, number={536}, journal={Nutrients}, author={Brand-Miller, Jennie and Buyken, Anette}, year={2020} }","ama":"Brand-Miller J, Buyken A. The Relationship between Glycemic Index and Health. <i>Nutrients</i>. Published online 2020. doi:<a href=\"https://doi.org/10.3390/nu12020536\">10.3390/nu12020536</a>"},"doi":"10.3390/nu12020536","user_id":"61597","article_number":"536","_id":"27807","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:57:45Z","publication_status":"published","year":"2020","title":"The Relationship between Glycemic Index and Health","status":"public","publication_identifier":{"issn":["2072-6643"]},"author":[{"last_name":"Brand-Miller","first_name":"Jennie","full_name":"Brand-Miller, Jennie"},{"last_name":"Buyken","first_name":"Anette","full_name":"Buyken, Anette","id":"65985"}]},{"volume":12165,"editor":[{"last_name":"Ahrendt","first_name":"Wolfgang","full_name":"Ahrendt, Wolfgang"},{"id":"573","first_name":"Heike","last_name":"Wehrheim","full_name":"Wehrheim, Heike"}],"user_id":"29719","doi":"10.1007/978-3-030-50995-8","language":[{"iso":"eng"}],"_id":"21019","series_title":"Lecture Notes in Computer Science","publisher":"Springer","intvolume":"     12165","date_updated":"2022-01-06T06:54:42Z","publication_identifier":{"isbn":["978-3-030-50994-1"]},"year":"2020","status":"public","title":"Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [postponed]","department":[{"_id":"77"}],"type":"conference_editor","date_created":"2021-01-19T10:35:37Z","citation":{"mla":"Ahrendt, Wolfgang, and Heike Wehrheim, editors. <i>Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [Postponed]</i>. Vol. 12165, Springer, 2020, doi:<a href=\"https://doi.org/10.1007/978-3-030-50995-8\">10.1007/978-3-030-50995-8</a>.","bibtex":"@book{Ahrendt_Wehrheim_2020, series={Lecture Notes in Computer Science}, title={Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [postponed]}, volume={12165}, DOI={<a href=\"https://doi.org/10.1007/978-3-030-50995-8\">10.1007/978-3-030-50995-8</a>}, publisher={Springer}, year={2020}, collection={Lecture Notes in Computer Science} }","ama":"Ahrendt W, Wehrheim H, eds. <i>Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [Postponed]</i>. Vol 12165. Springer; 2020. doi:<a href=\"https://doi.org/10.1007/978-3-030-50995-8\">10.1007/978-3-030-50995-8</a>","ieee":"W. Ahrendt and H. Wehrheim, Eds., <i>Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [postponed]</i>, vol. 12165. Springer, 2020.","apa":"Ahrendt, W., &#38; Wehrheim, H. (Eds.). (2020). <i>Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [postponed]</i> (Vol. 12165). Springer. <a href=\"https://doi.org/10.1007/978-3-030-50995-8\">https://doi.org/10.1007/978-3-030-50995-8</a>","short":"W. Ahrendt, H. Wehrheim, eds., Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [Postponed], Springer, 2020.","chicago":"Ahrendt, Wolfgang, and Heike Wehrheim, eds. <i>Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [Postponed]</i>. Vol. 12165. Lecture Notes in Computer Science. Springer, 2020. <a href=\"https://doi.org/10.1007/978-3-030-50995-8\">https://doi.org/10.1007/978-3-030-50995-8</a>."}},{"date_updated":"2022-01-06T06:54:47Z","publication_status":"published","publication_identifier":{"isbn":["978-3-86776-602-9"]},"author":[{"id":"71269","first_name":"Mortaza","orcid":"0000-0002-8652-9209","last_name":"Otroshi","full_name":"Otroshi, Mortaza"},{"full_name":"Meschut, Gerson","last_name":"Meschut","first_name":"Gerson","orcid":"0000-0002-2763-1246","id":"32056"},{"first_name":"Lukas","last_name":"Masendorf","full_name":"Masendorf, Lukas"},{"full_name":"Esderts, Alfons","first_name":"Alfons","last_name":"Esderts"}],"year":"2020","title":"Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile","language":[{"iso":"ger"}],"main_file_link":[{"url":"https://www.efb.de/efb-forschungsbericht-nr-545.html"}],"abstract":[{"text":"In modern lightweight designs, it is important to find a compromise between the strength and the weight of the construction detail. Hence, hybrid structures made of aluminum and steel materials are increasingly being used in automotive applications. Due to limitations in the quality of resistance spot welding, self-piercing riveting can be used as an alternative process to join sheets from different material groups. The aim of this project is to develop a computational method to assess the self-piercing riveted components subjected to the cyclic loads. To achieve this goal, two approaches are followed: Evaluation unsing internal forces: A substitute model is developed to describe the stiffness of self-piercing riveted joints subjected to different loading conditions. The parameters of the substitute model are identified and the internal force components acting on the joint are evaluated. The model provides the basis for the subsequent fatigue life estimation of self-piercing riveted components. For joints subjected to low bending moments, the fatigue life of components can be estimated accurately. Due to lack of specimen geometries producing pure bending and the combination of tension-bending forces, it is not possible to estimate the fatigue life of complex components subjected to high bending moments. Based on the results of [Mesc 16], the methodology is further developed to determine the stresses acting on the joint and to characterize the joining point with the use of simulations. The local concept proposed in the FKM guideline nonlinear provides the basis for the analytical assessment of self-piercing riveted components. In this regard, the cyclic behavior of the material and the local stresses are required as input data. The cyclic behavior of the aluminum EN AW-6181A-T6 and steel HX340LAD sheets were already determined in the previous project. Subsequently, in this project the properties of the rivet made of 38B2 steel are identified. The finite element analysis using elastic-plastic material behavior is used to determine the stresses in the joint subjected to the cyclic loads. To verify the model, the results of simulations and experiments are compared concerning the crack initiation zone as well as the determined number of cycles. To determine the stresses that can be used for the analytical assessment, the damage relevant load components need to be identified. In this regard, it is recommended to use the normal stress perpendicular to the crack propagation direction, the stress of crack opening mode I. Using the damage parameter PRAM and considering the support factors according to the FKM guideline nonlinear, a reliable estimation of the crack initiation zone within the joint is possible. Regarding the joint made of aluminum sheet EN AW-6181A, the methodology is able to provide promising results. However, regarding the joints made of aluminum EN AW-6181A and steel HX340LAD sheets, there is still potential to improve the results. The reasons for this are described in chapter 7.2.5 and 7.2.6. An analytical fatigue assessment is relatively easy to achieve with procedure 1. However, contrary to the objective formulated above, expensive fatigue tests are necessary to determine the failure conditions (strength values). This disadvantage can be circumvented by determining the strength information of individual joining points under different load types using procedure 2. The latter, in return, is not suitable for the assessment of complex components with several joining points. Due to the increasing calculation times of the simulation, the application in this case is not economically reasonable. By the described combination of method 1 and 2, the disadvantages of the two individual concepts can be compensated. An analytical fatigue assessment of self-piercing riveted components can be carried out based on the cyclic material behavior. The objective of the project was achieved.","lang":"eng"},{"text":"Hybridstrukturen aus Aluminium- und Stahlblechen, wie sie bei modernen Leichtbaukonstruktionen immer häufiger vorkommen, sind oft ein guter Kompromiss zwischen Festigkeit und Gewicht der Konstruktion. Das in der Blechverarbeitung häufig eingesetzte Widerstandspunktschweißen führt bei der Verbindung von artverschiedenen Werkstoffen häufig nicht zu der gewünschten Verbindungsqualität. In solchen Fällen kann das mechanische Fügen mittels Halbhohlstanzniet eine gute Alternative darstellen. Das Ziel dieses Forschungsprojektes ist die Entwicklung einer Berechnungsmethode zur Auslegung von zyklisch belasteten halbhohlstanzgenieteten Bauteilen. Die zu entwickelnde Berechnungsmethodik soll dem späteren Anwender eine Bauteilauslegung mit möglichst geringem experimentellem Aufwand ermöglichen. Um dieses Ziel zu erreichen, werden zwei Vorgehensweisen verfolgt: Vorgehensweise über örtliche Schnittlasten: Für komplexe Geometrien wird ein Ersatzmodell des Fügepunktes entwickelt, welches dieselben Steifigkeiten wie der reale Fügepunkt aufweist. Mit den Kraftkomponenten, die auf den Ersatzfügepunkt wirken und dessen simulativer oder experimenteller Charakterisierung, kann die Lebensdauer für komplexe Bauteile abgeschätzt werden. Für Fügeverbindungen, bei denen am Fügepunkt nur eine geringe Biegebeanspruchung auftritt, kann mit Hilfe des experimentell charakterisierten Fügepunktes eine treffsichere Lebensdauerabschätzung durchgeführt werden. Aufgrund des Fehlens einer geeigneten Probenform zur Charakterisierung des Fügepunktes unter Biegebelastung zeigt die Treffsicherheit bei hohen Biegebeanspruchungen am Fügepunkt Verbesserungspotenzial. Auf Basis der Ergebnisse aus [Mesc 16] wird die Methodik zur Ermittlung der Beanspruchungen in der Fügeverbindung weiterentwickelt und Erkenntnisse über Einflüsse auf die örtlichen Beanspruchungen gewonnen, um den Fügepunkt simulativ charakterisieren zu können. Eine solche Möglichkeit bietet die Anwendung des Örtlichen Konzeptes, das in der FKM-Richtlinie nichtlinear für homogene Werkstoffe standardisiert ist. Der dort beschriebene Algorithmus wird als Ausgangspunkt für die rechnerische Auslegung von Stanznietverbindungen genommen und an deren Bedürfnisse angepasst. Als Eingangsdaten zur Auslegung werden das zyklische Werkstoffverhalten und die Beanspruchungen in der Fügeverbindung benötigt. Das zyklische Werkstoffverhalten der Bleche aus Aluminium EN AW-6181A-T6 und Stahl HX340LAD wurde im Vorgängerprojekt bereits bestimmt. In diesem Projekt folgt die noch fehlende Charakterisierung des Nietwerkstoffs, des Stahls 38B2 H4. Die Bestimmung der Beanspruchungen in der Fügeverbindung unter zyklischer Belastung erfolgt mit Hilfe einer Finite-Elemente-Analyse mit elastisch-plastischem Verformungsverhalten. Verifiziert werden die Simulationsergebnisse, indem die Versagensorte aus Simulation und Versuch sowie die berechneten und experimentellen Lebensdauern miteinander verglichen werden. Zur Berechnung der Beanspruchungen muss die schädigungsrelevante Beanspruchungsgröße identifiziert werden. Hier wird die Normalspannung senkrecht zur Rissausbreitung, die sogenannte rissöffnende oder Mode I Spannung, als auszuwertende Beanspruchungsgröße empfohlen. Mit der Verwendung des Schädigungsparameters PRAM und unter Berücksichtigung der Stützwirkung entsprechend der FKM-Richtlinie nichtlinear ist eine zuverlässige Abschätzung des Versagensortes in der Fügeverbindung möglich. Für die Fügeverbindung aus dem Aluminiumblech EN AW-6181A ist mit dieser Methodik auch eine Lebensdauerabschätzung möglich. Für die Verbindungen, in denen das Aluminiumblech EN AW-6181A und das Stahlblech HX340LAD kombiniert werden, zeigt die Treffsicherheit jedoch noch erkennbares Verbesserungspotential. Die Gründe hierfür werden in Kapitel 7.2.5 und 7.2.6 beschrieben. Eine rechnerische Betriebsfestigkeitsauslegung ist mit Vorgehensweise 1 vergleichsweise einfach möglich. Jedoch sind entgegen des oben formulierten Ziels aufwendige Schwingversuche zur Bestimmung der Versagensbedingungen (Festigkeitswerte) notwendig. Dieser Nachteil kann umgangen werden, indem die Festigkeitsinformationen des einzelnen Fügepunktes unter verschiedenen Belastungsarten mithilfe von Vorgehensweise 2 ermittelt werden. Letztere wiederum eignet sich selbst nicht für eine Auslegung komplexer Bauteile mit mehreren Fügepunkten. Aufgrund der steigenden Berechnungsdauern der Simulation, ist die Anwendung in diesem Fall wirtschaftlich nicht sinnvoll. Durch die beschriebene Kombinationsmethode können die Nachteile der beiden einzelnen Konzepte kompensiert und eine rechnerische Betriebsfestigkeitsauslegung stanzgenieteter Bauteile basierend auf den zyklischen Werkstoffkennwerten durchgeführt werden. Das Ziel des Forschungsvorhabens wurde erreicht. Das IGF-Vorhaben „Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile\" der Forschungsvereinigung EFB e.V. wurde unter der Fördernummer AiF 19760N über die Arbeitsgemeinschaft industrieller Forschungsvereinigungen (AiF) im Rahmen des Programms zur Förderung der Industriellen Gemeinschaftsforschung (IGF) vom Bundesministerium für Wirtschaft und Energie aufgrund eines Beschlusses des Deutschen Bundestages gefördert. Der Abschlussbericht ist als EFB-Forschungsbericht Nr. 545 erschienen und bei der EFB-Geschäftsstelle und im Buchhandel erhältlich.","lang":"ger"}],"department":[{"_id":"157"}],"type":"report","date_created":"2021-02-03T12:23:41Z","file":[{"relation":"main_file","date_updated":"2021-02-03T12:19:32Z","file_name":"Simulation BF Stanznieten_EFB 545.jpg","file_size":8819,"access_level":"closed","file_id":"21153","content_type":"image/jpeg","success":1,"creator":"motroshi","date_created":"2021-02-03T12:19:32Z"}],"has_accepted_license":"1","status":"public","ddc":["620"],"user_id":"71269","_id":"21152","publisher":"Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB)","page":"282","report_number":"545","citation":{"chicago":"Otroshi, Mortaza, Gerson Meschut, Lukas Masendorf, and Alfons Esderts. <i>Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile</i>. Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB), 2020.","ama":"Otroshi M, Meschut G, Masendorf L, Esderts A. <i>Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile</i>. Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB); 2020.","short":"M. Otroshi, G. Meschut, L. Masendorf, A. Esderts, Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile, Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB), 2020.","bibtex":"@book{Otroshi_Meschut_Masendorf_Esderts_2020, title={Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile}, publisher={Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB)}, author={Otroshi, Mortaza and Meschut, Gerson and Masendorf, Lukas and Esderts, Alfons}, year={2020} }","apa":"Otroshi, M., Meschut, G., Masendorf, L., &#38; Esderts, A. (2020). <i>Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile</i>. Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB).","mla":"Otroshi, Mortaza, et al. <i>Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile</i>. Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB), 2020.","ieee":"M. Otroshi, G. Meschut, L. Masendorf, and A. Esderts, <i>Simulationsbasierte Betriebsfestigkeitsanalyse stanzgenieteter Bauteile</i>. Europäische Forschungsgesellschaft für Blechverarbeitung e.V. (EFB), 2020."},"file_date_updated":"2021-02-03T12:19:32Z"},{"citation":{"mla":"Altenhöner, Reinhard, et al. “NFDI4Culture - Consortium for Research Data on Material and Immaterial Cultural Heritage.” <i>Research Ideas and Outcomes</i>, 2020, doi:<a href=\"https://doi.org/10.3897/rio.6.e57036\">10.3897/rio.6.e57036</a>.","bibtex":"@article{Altenhöner_Blümel_Boehm_Bove_Bicher_Bracht_Brand_Dieckmann_Effinger_Hagener_et al._2020, title={NFDI4Culture - Consortium for research data on material and immaterial cultural heritage}, DOI={<a href=\"https://doi.org/10.3897/rio.6.e57036\">10.3897/rio.6.e57036</a>}, journal={Research Ideas and Outcomes}, author={Altenhöner, Reinhard and Blümel, Ina and Boehm, Franziska and Bove, Jens and Bicher, Katrin and Bracht, Christian and Brand, Ortrun and Dieckmann, Lisa and Effinger, Maria and Hagener, Malte and et al.}, year={2020} }","ama":"Altenhöner R, Blümel I, Boehm F, et al. NFDI4Culture - Consortium for research data on material and immaterial cultural heritage. <i>Research Ideas and Outcomes</i>. 2020. doi:<a href=\"https://doi.org/10.3897/rio.6.e57036\">10.3897/rio.6.e57036</a>","ieee":"R. Altenhöner <i>et al.</i>, “NFDI4Culture - Consortium for research data on material and immaterial cultural heritage,” <i>Research Ideas and Outcomes</i>, 2020.","apa":"Altenhöner, R., Blümel, I., Boehm, F., Bove, J., Bicher, K., Bracht, C., … Wiermann, B. (2020). NFDI4Culture - Consortium for research data on material and immaterial cultural heritage. <i>Research Ideas and Outcomes</i>. <a href=\"https://doi.org/10.3897/rio.6.e57036\">https://doi.org/10.3897/rio.6.e57036</a>","short":"R. Altenhöner, I. Blümel, F. Boehm, J. Bove, K. Bicher, C. Bracht, O. Brand, L. Dieckmann, M. Effinger, M. Hagener, A. Hammes, L. Heller, A. Kailus, H. Kohle, J. Ludwig, A. Münzmay, S. Pittroff, M. Razum, D. Röwenstrunk, H. Sack, H. Simon, D. Schmidt, T. Schrade, A.-V. Walzel, B. Wiermann, Research Ideas and Outcomes (2020).","chicago":"Altenhöner, Reinhard, Ina Blümel, Franziska Boehm, Jens Bove, Katrin Bicher, Christian Bracht, Ortrun Brand, et al. “NFDI4Culture - Consortium for Research Data on Material and Immaterial Cultural Heritage.” <i>Research Ideas and Outcomes</i>, 2020. <a href=\"https://doi.org/10.3897/rio.6.e57036\">https://doi.org/10.3897/rio.6.e57036</a>."},"publication":"Research Ideas and Outcomes","abstract":[{"lang":"eng","text":"<jats:p>Digital data on tangible and intangible cultural assets is an essential part of daily life, communication and experience. It has a lasting influence on the perception of cultural identity as well as on the interactions between research, the cultural economy and society. Throughout the last three decades, many cultural heritage institutions have contributed a wealth of digital representations of cultural assets (2D digital reproductions of paintings, sheet music, 3D digital models of sculptures, monuments, rooms, buildings), audio-visual data (music, film, stage performances), and procedural research data such as encoding and annotation formats. The long-term preservation and FAIR availability of research data from the cultural heritage domain is fundamentally important, not only for future academic success in the humanities but also for the cultural identity of individuals and society as a whole. Up to now, no coordinated effort for professional research data management on a national level exists in Germany. NFDI4Culture aims to fill this gap and create a user-centered, research-driven infrastructure that will cover a broad range of research domains from musicology, art history and architecture to performance, theatre, film, and media studies.</jats:p>\r\n          <jats:p>The research landscape addressed by the consortium is characterized by strong institutional differentiation. Research units in the consortium's community of interest comprise university institutes, art colleges, academies, galleries, libraries, archives and museums. This diverse landscape is also characterized by an abundance of research objects, methodologies and a great potential for data-driven research. In a unique effort carried out by the applicant and co-applicants of this proposal and ten academic societies, this community is interconnected for the first time through a federated approach that is ideally suited to the needs of the participating researchers. To promote collaboration within the NFDI, to share knowledge and technology and to provide extensive support for its users have been the guiding principles of the consortium from the beginning and will be at the heart of all workflows and decision-making processes. Thanks to these principles, NFDI4Culture has gathered strong support ranging from individual researchers to high-level cultural heritage organizations such as the UNESCO, the International Council of Museums, the Open Knowledge Foundation and Wikimedia. On this basis, NFDI4Culture will take innovative measures that promote a cultural change towards a more reflective and sustainable handling of research data and at the same time boost qualification and professionalization in data-driven research in the domain of cultural heritage. This will create a long-lasting impact on science, cultural economy and society as a whole.</jats:p>"}],"date_created":"2021-02-17T15:20:47Z","department":[{"_id":"233"}],"type":"journal_article","author":[{"last_name":"Altenhöner","first_name":"Reinhard","full_name":"Altenhöner, Reinhard"},{"first_name":"Ina","last_name":"Blümel","full_name":"Blümel, Ina"},{"full_name":"Boehm, Franziska","last_name":"Boehm","first_name":"Franziska"},{"full_name":"Bove, Jens","last_name":"Bove","first_name":"Jens"},{"last_name":"Bicher","first_name":"Katrin","full_name":"Bicher, Katrin"},{"last_name":"Bracht","first_name":"Christian","full_name":"Bracht, Christian"},{"first_name":"Ortrun","last_name":"Brand","full_name":"Brand, Ortrun"},{"full_name":"Dieckmann, Lisa","first_name":"Lisa","last_name":"Dieckmann"},{"first_name":"Maria","last_name":"Effinger","full_name":"Effinger, Maria"},{"full_name":"Hagener, Malte","first_name":"Malte","last_name":"Hagener"},{"full_name":"Hammes, Andrea","first_name":"Andrea","last_name":"Hammes"},{"full_name":"Heller, Lambert","first_name":"Lambert","last_name":"Heller"},{"last_name":"Kailus","first_name":"Angela","full_name":"Kailus, Angela"},{"last_name":"Kohle","first_name":"Hubertus","full_name":"Kohle, Hubertus"},{"full_name":"Ludwig, Jens","first_name":"Jens","last_name":"Ludwig"},{"first_name":"Andreas","last_name":"Münzmay","full_name":"Münzmay, Andreas"},{"last_name":"Pittroff","first_name":"Sarah","full_name":"Pittroff, Sarah"},{"last_name":"Razum","first_name":"Matthias","full_name":"Razum, Matthias"},{"full_name":"Röwenstrunk, Daniel","orcid":"https://orcid.org/0000-0001-6271-2095","first_name":"Daniel","last_name":"Röwenstrunk","id":"439"},{"last_name":"Sack","first_name":"Harald","full_name":"Sack, Harald"},{"full_name":"Simon, Holger","last_name":"Simon","first_name":"Holger"},{"first_name":"Dörte","last_name":"Schmidt","full_name":"Schmidt, Dörte"},{"first_name":"Torsten","last_name":"Schrade","full_name":"Schrade, Torsten"},{"full_name":"Walzel, Annika-Valeska","first_name":"Annika-Valeska","last_name":"Walzel"},{"full_name":"Wiermann, Barbara","last_name":"Wiermann","first_name":"Barbara"}],"publication_identifier":{"issn":["2367-7163"]},"status":"public","title":"NFDI4Culture - Consortium for research data on material and immaterial cultural heritage","year":"2020","publication_status":"published","date_updated":"2022-01-06T06:54:51Z","language":[{"iso":"eng"}],"_id":"21257","user_id":"439","doi":"10.3897/rio.6.e57036"},{"date_created":"2021-03-05T08:31:03Z","type":"conference","department":[{"_id":"563"}],"publication":"Proceedings of the Design Society","citation":{"mla":"Japs, Segej, et al. “Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation.” <i>Proceedings of the Design Society</i>, 2020.","ama":"Japs S, Kharatyan A, Tekaat J, Kaiser L, Dumitrescu R. Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation. In: <i>Proceedings of the Design Society</i>. ; 2020.","bibtex":"@inproceedings{Japs_Kharatyan_Tekaat_Kaiser_Dumitrescu_2020, title={Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation}, booktitle={Proceedings of the Design Society}, author={Japs, Segej and Kharatyan, Aschot and Tekaat, Julian and Kaiser, Lydia and Dumitrescu, Roman}, year={2020} }","apa":"Japs, S., Kharatyan, A., Tekaat, J., Kaiser, L., &#38; Dumitrescu, R. (2020). Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation. In <i>Proceedings of the Design Society</i>. Cavtat.","ieee":"S. Japs, A. Kharatyan, J. Tekaat, L. Kaiser, and R. Dumitrescu, “Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation,” in <i>Proceedings of the Design Society</i>, Cavtat, 2020.","chicago":"Japs, Segej, Aschot Kharatyan, Julian Tekaat, Lydia Kaiser, and Roman Dumitrescu. “Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation.” In <i>Proceedings of the Design Society</i>, 2020.","short":"S. Japs, A. Kharatyan, J. Tekaat, L. Kaiser, R. Dumitrescu, in: Proceedings of the Design Society, 2020."},"language":[{"iso":"eng"}],"_id":"21382","user_id":"15782","title":"Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation","status":"public","year":"2020","author":[{"full_name":"Japs, Segej","first_name":"Segej","last_name":"Japs"},{"last_name":"Kharatyan","first_name":"Aschot","full_name":"Kharatyan, Aschot"},{"first_name":"Julian","last_name":"Tekaat","full_name":"Tekaat, Julian"},{"full_name":"Kaiser, Lydia","first_name":"Lydia","last_name":"Kaiser"},{"first_name":"Roman","last_name":"Dumitrescu","full_name":"Dumitrescu, Roman","id":"16190"}],"conference":{"end_date":"2020-05-21","name":"Design Society","start_date":"2020-05-18","location":"Cavtat"},"date_updated":"2022-01-06T06:54:57Z"},{"language":[{"iso":"eng"}],"_id":"21392","user_id":"43136","conference":{"end_date":"2020-07-17","start_date":"2020-07-15","name":"CIRP Design Conference","location":"Gulf of Naples"},"author":[{"last_name":"Henkenjohann","first_name":"Mark","full_name":"Henkenjohann, Mark"},{"last_name":"Joppen","first_name":"Robert","full_name":"Joppen, Robert"},{"last_name":"Köchling","first_name":"Daniel","full_name":"Köchling, Daniel"},{"first_name":"Sebastian","last_name":"von Enzberg","full_name":"von Enzberg, Sebastian"},{"full_name":"Kühn, Arno","first_name":"Arno","last_name":"Kühn"},{"id":"16190","full_name":"Dumitrescu, Roman","first_name":"Roman","last_name":"Dumitrescu"}],"title":"Identification and specification of standard modules in production for a material flow simulation","status":"public","year":"2020","date_updated":"2022-01-06T06:54:58Z","date_created":"2021-03-08T10:32:10Z","department":[{"_id":"563"}],"type":"conference","citation":{"bibtex":"@inproceedings{Henkenjohann_Joppen_Köchling_von Enzberg_Kühn_Dumitrescu_2020, title={Identification and specification of standard modules in production for a material flow simulation}, booktitle={Procedia CIRP}, author={Henkenjohann, Mark and Joppen, Robert and Köchling, Daniel and von Enzberg, Sebastian and Kühn, Arno and Dumitrescu, Roman}, year={2020} }","ama":"Henkenjohann M, Joppen R, Köchling D, von Enzberg S, Kühn A, Dumitrescu R. Identification and specification of standard modules in production for a material flow simulation. In: <i>Procedia CIRP</i>. ; 2020.","mla":"Henkenjohann, Mark, et al. “Identification and Specification of Standard Modules in Production for a Material Flow Simulation.” <i>Procedia CIRP</i>, 2020.","short":"M. Henkenjohann, R. Joppen, D. Köchling, S. von Enzberg, A. Kühn, R. Dumitrescu, in: Procedia CIRP, 2020.","chicago":"Henkenjohann, Mark, Robert Joppen, Daniel Köchling, Sebastian von Enzberg, Arno Kühn, and Roman Dumitrescu. “Identification and Specification of Standard Modules in Production for a Material Flow Simulation.” In <i>Procedia CIRP</i>, 2020.","ieee":"M. Henkenjohann, R. Joppen, D. Köchling, S. von Enzberg, A. Kühn, and R. Dumitrescu, “Identification and specification of standard modules in production for a material flow simulation,” in <i>Procedia CIRP</i>, Gulf of Naples, 2020.","apa":"Henkenjohann, M., Joppen, R., Köchling, D., von Enzberg, S., Kühn, A., &#38; Dumitrescu, R. (2020). Identification and specification of standard modules in production for a material flow simulation. In <i>Procedia CIRP</i>. Gulf of Naples."},"publication":"Procedia CIRP","quality_controlled":"1"},{"abstract":[{"lang":"eng","text":"This study presents a model in which heterogenous, risk-averse agents can use either (legal) tax optimisation or (illegal) tax evasion to reduce their tax burden and thus increase their utility. In addition to introducing individual variables like risk aversion or income, we allow agents to observe the behaviour of their neighbours. Depending on the behaviour of their peer group’s members, the agents’ utilities may increase or decrease, respectively. Simulation results show that taxpayers favour illegal evasion over legal optimisation in most cases. We find that interactions between taxpayers and their social networks have a deep impact on aggregate behaviour. Parameter changes such as increasing audit rates affect the results, often being intensified by social interactions. The effect of such changes varies depending on whether or not a fraction of agents is considered inherently honest."}],"citation":{"apa":"Diller, M., Lorenz, J., &#38; Meier, D. (2020). Tax Avoidance and Social Control. In J. S. Neufeld, U. Buscher, R. Lasch, D. Möst, &#38; J. Schönberger (Eds.), <i> Operations Research Proceedings 2019</i> (pp. 633–639). Springer. <a href=\"https://doi.org/10.1007/978-3-030-48439-2_77\">https://doi.org/10.1007/978-3-030-48439-2_77</a>","ieee":"M. Diller, J. Lorenz, and D. Meier, “Tax Avoidance and Social Control,” in <i> Operations Research Proceedings 2019</i>, J. S. Neufeld, U. Buscher, R. Lasch, D. Möst, and J. Schönberger, Eds. Springer, 2020, pp. 633–639.","chicago":"Diller, Markus, Johannes Lorenz, and David Meier. “Tax Avoidance and Social Control.” In <i> Operations Research Proceedings 2019</i>, edited by Janis S. Neufeld, Udo Buscher, Rainer Lasch, Dominik Möst, and Jörn Schönberger, 633–39. Springer, 2020. <a href=\"https://doi.org/10.1007/978-3-030-48439-2_77\">https://doi.org/10.1007/978-3-030-48439-2_77</a>.","short":"M. Diller, J. Lorenz, D. Meier, in: J.S. Neufeld, U. Buscher, R. Lasch, D. Möst, J. Schönberger (Eds.),  Operations Research Proceedings 2019, Springer, 2020, pp. 633–639.","mla":"Diller, Markus, et al. “Tax Avoidance and Social Control.” <i> Operations Research Proceedings 2019</i>, edited by Janis S. Neufeld et al., Springer, 2020, pp. 633–39, doi:<a href=\"https://doi.org/10.1007/978-3-030-48439-2_77\">10.1007/978-3-030-48439-2_77</a>.","ama":"Diller M, Lorenz J, Meier D. Tax Avoidance and Social Control. In: Neufeld JS, Buscher U, Lasch R, Möst D, Schönberger J, eds. <i> Operations Research Proceedings 2019</i>. Springer; 2020:633-639. doi:<a href=\"https://doi.org/10.1007/978-3-030-48439-2_77\">10.1007/978-3-030-48439-2_77</a>","bibtex":"@inbook{Diller_Lorenz_Meier_2020, title={Tax Avoidance and Social Control}, DOI={<a href=\"https://doi.org/10.1007/978-3-030-48439-2_77\">10.1007/978-3-030-48439-2_77</a>}, booktitle={ Operations Research Proceedings 2019}, publisher={Springer}, author={Diller, Markus and Lorenz, Johannes and Meier, David}, editor={Neufeld, Janis S. and Buscher, Udo and Lasch, Rainer and Möst, Dominik and Schönberger, JörnEditors}, year={2020}, pages={633–639} }"},"publication":" Operations Research Proceedings 2019","department":[{"_id":"187"}],"type":"book_chapter","date_created":"2021-03-09T08:26:38Z","date_updated":"2022-01-06T06:54:59Z","publication_identifier":{"isbn":["978-3-030-48439-2"]},"author":[{"last_name":"Diller","first_name":"Markus","full_name":"Diller, Markus"},{"last_name":"Lorenz","first_name":"Johannes","full_name":"Lorenz, Johannes"},{"first_name":"David","last_name":"Meier","full_name":"Meier, David"}],"title":"Tax Avoidance and Social Control","year":"2020","status":"public","editor":[{"last_name":"Neufeld","first_name":"Janis S.","full_name":"Neufeld, Janis S."},{"first_name":"Udo","last_name":"Buscher","full_name":"Buscher, Udo"},{"full_name":"Lasch, Rainer","first_name":"Rainer","last_name":"Lasch"},{"full_name":"Möst, Dominik","first_name":"Dominik","last_name":"Möst"},{"full_name":"Schönberger, Jörn","last_name":"Schönberger","first_name":"Jörn"}],"doi":"10.1007/978-3-030-48439-2_77","user_id":"68607","language":[{"iso":"eng"}],"_id":"21408","publisher":"Springer","page":"633-639"},{"citation":{"mla":"Japs, Segej, et al. “CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation.” <i>Proceedings of the 16th International Design Conference (DESIGN 2020)</i>, 2020.","bibtex":"@inproceedings{Japs_Kharatyan_Kaiser_Dumitrescu_2020, title={CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation}, booktitle={Proceedings of the 16th International Design Conference (DESIGN 2020)}, author={Japs, Segej and Kharatyan, Aschot and Kaiser, Lydia and Dumitrescu, Roman}, year={2020} }","ama":"Japs S, Kharatyan A, Kaiser L, Dumitrescu R. CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation. In: <i>Proceedings of the 16th International Design Conference (DESIGN 2020)</i>. ; 2020.","ieee":"S. Japs, A. Kharatyan, L. Kaiser, and R. Dumitrescu, “CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation,” in <i>Proceedings of the 16th International Design Conference (DESIGN 2020)</i>, Cavtat, 2020.","apa":"Japs, S., Kharatyan, A., Kaiser, L., &#38; Dumitrescu, R. (2020). CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation. In <i>Proceedings of the 16th International Design Conference (DESIGN 2020)</i>. Cavtat.","short":"S. Japs, A. Kharatyan, L. Kaiser, R. Dumitrescu, in: Proceedings of the 16th International Design Conference (DESIGN 2020), 2020.","chicago":"Japs, Segej, Aschot Kharatyan, Lydia Kaiser, and Roman Dumitrescu. “CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation.” In <i>Proceedings of the 16th International Design Conference (DESIGN 2020)</i>, 2020."},"publication":"Proceedings of the 16th International Design Conference (DESIGN 2020)","department":[{"_id":"563"}],"type":"conference","date_created":"2021-03-10T09:55:40Z","date_updated":"2022-01-06T06:54:59Z","author":[{"first_name":"Segej","last_name":"Japs","full_name":"Japs, Segej"},{"last_name":"Kharatyan","first_name":"Aschot","full_name":"Kharatyan, Aschot"},{"last_name":"Kaiser","first_name":"Lydia","full_name":"Kaiser, Lydia"},{"last_name":"Dumitrescu","first_name":"Roman","full_name":"Dumitrescu, Roman","id":"16190"}],"conference":{"end_date":"2020-05-21","location":"Cavtat","start_date":"2020-05-18","name":"Design Society"},"year":"2020","title":"CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation","status":"public","user_id":"15782","language":[{"iso":"eng"}],"_id":"21438"},{"user_id":"76599","_id":"21536","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:55:03Z","status":"public","title":"Multi-Armed Bandits with Censored Consumption of Resources","year":"2020","author":[{"full_name":"Bengs, Viktor","first_name":"Viktor","last_name":"Bengs"},{"full_name":"Hüllermeier, Eyke","first_name":"Eyke","last_name":"Hüllermeier"}],"type":"preprint","department":[{"_id":"34"},{"_id":"7"},{"_id":"355"}],"date_created":"2021-03-18T11:27:37Z","abstract":[{"text":"We consider a resource-aware variant of the classical multi-armed bandit\r\nproblem: In each round, the learner selects an arm and determines a resource\r\nlimit. It then observes a corresponding (random) reward, provided the (random)\r\namount of consumed resources remains below the limit. Otherwise, the\r\nobservation is censored, i.e., no reward is obtained. For this problem setting,\r\nwe introduce a measure of regret, which incorporates the actual amount of\r\nallocated resources of each learning round as well as the optimality of\r\nrealizable rewards. Thus, to minimize regret, the learner needs to set a\r\nresource limit and choose an arm in such a way that the chance to realize a\r\nhigh reward within the predefined resource limit is high, while the resource\r\nlimit itself should be kept as low as possible. We derive the theoretical lower\r\nbound on the cumulative regret and propose a learning algorithm having a regret\r\nupper bound that matches the lower bound. In a simulation study, we show that\r\nour learning algorithm outperforms straightforward extensions of standard\r\nmulti-armed bandit algorithms.","lang":"eng"}],"project":[{"name":"Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"}],"publication":"arXiv:2011.00813","citation":{"bibtex":"@article{Bengs_Hüllermeier_2020, title={Multi-Armed Bandits with Censored Consumption of Resources}, journal={arXiv:2011.00813}, author={Bengs, Viktor and Hüllermeier, Eyke}, year={2020} }","ama":"Bengs V, Hüllermeier E. Multi-Armed Bandits with Censored Consumption of Resources. <i>arXiv:201100813</i>. 2020.","mla":"Bengs, Viktor, and Eyke Hüllermeier. “Multi-Armed Bandits with Censored Consumption of Resources.” <i>ArXiv:2011.00813</i>, 2020.","chicago":"Bengs, Viktor, and Eyke Hüllermeier. “Multi-Armed Bandits with Censored Consumption of Resources.” <i>ArXiv:2011.00813</i>, 2020.","short":"V. Bengs, E. Hüllermeier, ArXiv:2011.00813 (2020).","ieee":"V. Bengs and E. Hüllermeier, “Multi-Armed Bandits with Censored Consumption of Resources,” <i>arXiv:2011.00813</i>. 2020.","apa":"Bengs, V., &#38; Hüllermeier, E. (2020). Multi-Armed Bandits with Censored Consumption of Resources. <i>ArXiv:2011.00813</i>."}},{"place":"Croyton, UK","project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"citation":{"mla":"Schröder, Dominik, et al. “Far-Field Prediction Combining Simulations with near-Field Measurements for EMI Assessment of PCBs.” <i>Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis</i>, 1st ed.,  The Institution of Engineering and Technology (IET), 2020, pp. 315-346 (32), doi:<a href=\"https://doi.org/10.1049/pbcs072e_ch14\">10.1049/pbcs072e_ch14</a>.","apa":"Schröder, D., Lange, S., Hangmann, C., &#38; Hedayat, C. (2020). Far-field prediction combining simulations with near-field measurements for EMI assessment of PCBs. In <i>Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis</i> (1st ed., pp. 315-346 (32)). Croyton, UK:  The Institution of Engineering and Technology (IET). <a href=\"https://doi.org/10.1049/pbcs072e_ch14\">https://doi.org/10.1049/pbcs072e_ch14</a>","ieee":"D. Schröder, S. Lange, C. Hangmann, and C. Hedayat, “Far-field prediction combining simulations with near-field measurements for EMI assessment of PCBs,” in <i>Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis</i>, 1st ed., Croyton, UK:  The Institution of Engineering and Technology (IET), 2020, pp. 315-346 (32).","chicago":"Schröder, Dominik, Sven Lange, Christian Hangmann, and Christian Hedayat. “Far-Field Prediction Combining Simulations with near-Field Measurements for EMI Assessment of PCBs.” In <i>Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis</i>, 1st ed., 315-346 (32). Croyton, UK:  The Institution of Engineering and Technology (IET), 2020. <a href=\"https://doi.org/10.1049/pbcs072e_ch14\">https://doi.org/10.1049/pbcs072e_ch14</a>.","ama":"Schröder D, Lange S, Hangmann C, Hedayat C. Far-field prediction combining simulations with near-field measurements for EMI assessment of PCBs. In: <i>Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis</i>. 1st ed. Croyton, UK:  The Institution of Engineering and Technology (IET); 2020:315-346 (32). doi:<a href=\"https://doi.org/10.1049/pbcs072e_ch14\">10.1049/pbcs072e_ch14</a>","short":"D. Schröder, S. Lange, C. Hangmann, C. Hedayat, in: Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis, 1st ed.,  The Institution of Engineering and Technology (IET), Croyton, UK, 2020, pp. 315-346 (32).","bibtex":"@inbook{Schröder_Lange_Hangmann_Hedayat_2020, place={Croyton, UK}, edition={1}, title={Far-field prediction combining simulations with near-field measurements for EMI assessment of PCBs}, DOI={<a href=\"https://doi.org/10.1049/pbcs072e_ch14\">10.1049/pbcs072e_ch14</a>}, booktitle={Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis}, publisher={ The Institution of Engineering and Technology (IET)}, author={Schröder, Dominik and Lange, Sven and Hangmann, Christian and Hedayat, Christian}, year={2020}, pages={315-346 (32)} }"},"user_id":"38240","page":"315-346 (32)","_id":"21542","edition":"1","publisher":" The Institution of Engineering and Technology (IET)","status":"public","keyword":["Huygens' box","NF-to-FF transformation","efficient FF radiation model","FF behaviour","EMI assessment","PCB","near-field measurements","efficient radiation model","far-field behaviour","RF design process","far-field prediction","Huygens'box principle","fullwave simulation","electronic system radiation","equivalent radiation source","electromagnetic simulation tool","near-field scan data","EM compatibility failure reduction"],"type":"book_chapter","department":[{"_id":"485"}],"date_created":"2021-03-18T13:49:49Z","related_material":{"record":[{"status":"public","id":"21542","relation":"other"}]},"abstract":[{"text":"Using near-field (NF) scan data to predict the far-field (FF) behaviour of radiating electronic systems represents a novel method to accompany the whole RF design process. This approach involves so-called Huygens' box as an efficient radiation model inside an electromagnetic (EM) simulation tool and then transforms the scanned NF measured data into the FF. For this, the basic idea of the Huygens'box principle and the NF-to-FF transformation are briefly presented. The NF is measured on the Huygens' box around a device under test using anNF scanner, recording the magnitude and phase of the site-related magnetic and electric components. A comparison between a fullwave simulation and the measurement results shows a good similarity in both the NF and the simulated and transformed FF.Thus, this method is applicable to predict the FF behaviour of any electronic system by measuring the NF. With this knowledge, the RF design can be improved due to allowing a significant reduction of EM compatibility failure at the end of the development flow. In addition, the very efficient FF radiation model can be used for detailed investigations in various environments and the impact of such an equivalent radiation source on other electronic systems can be assessed.","lang":"eng"}],"publication":"Tensorial Analysis of Networks (TAN) Modelling for PCB Signal Integrity and EMC Analysis","doi":"10.1049/pbcs072e_ch14","main_file_link":[{"url":"https://digital-library.theiet.org/content/books/10.1049/pbcs072e_ch14"}],"language":[{"iso":"eng"}],"publication_status":"published","date_updated":"2022-01-06T06:55:03Z","title":"Far-field prediction combining simulations with near-field measurements for EMI assessment of PCBs","year":"2020","author":[{"last_name":"Schröder","first_name":"Dominik","full_name":"Schröder, Dominik"},{"last_name":"Lange","first_name":"Sven","full_name":"Lange, Sven","id":"38240"},{"last_name":"Hangmann","first_name":"Christian","full_name":"Hangmann, Christian"},{"first_name":"Christian","last_name":"Hedayat","full_name":"Hedayat, Christian"}],"publication_identifier":{"isbn":["9781839530494","9781839530500"]}},{"citation":{"mla":"Alberto Oliveira de Souza Junior, Carlos, et al. “Exploration of FPGA-Based Hardware Designs for QR Decomposition for Solving Stiff ODE Numerical Methods Using the HARP Hybrid Architecture.” <i>Electronics</i>, 843, 2020, doi:<a href=\"https://doi.org/10.3390/electronics9050843\">10.3390/electronics9050843</a>.","ama":"Alberto Oliveira de Souza Junior C, Bispo J, Cardoso JMP, Diniz PC, Marques E. Exploration of FPGA-Based Hardware Designs for QR Decomposition for Solving Stiff ODE Numerical Methods Using the HARP Hybrid Architecture. <i>Electronics</i>. 2020. doi:<a href=\"https://doi.org/10.3390/electronics9050843\">10.3390/electronics9050843</a>","bibtex":"@article{Alberto Oliveira de Souza Junior_Bispo_Cardoso_Diniz_Marques_2020, title={Exploration of FPGA-Based Hardware Designs for QR Decomposition for Solving Stiff ODE Numerical Methods Using the HARP Hybrid Architecture}, DOI={<a href=\"https://doi.org/10.3390/electronics9050843\">10.3390/electronics9050843</a>}, number={843}, journal={Electronics}, author={Alberto Oliveira de Souza Junior, Carlos and Bispo, João and Cardoso, João M. P. and Diniz, Pedro C. and Marques, Eduardo}, year={2020} }","apa":"Alberto Oliveira de Souza Junior, C., Bispo, J., Cardoso, J. M. P., Diniz, P. C., &#38; Marques, E. (2020). Exploration of FPGA-Based Hardware Designs for QR Decomposition for Solving Stiff ODE Numerical Methods Using the HARP Hybrid Architecture. <i>Electronics</i>. <a href=\"https://doi.org/10.3390/electronics9050843\">https://doi.org/10.3390/electronics9050843</a>","ieee":"C. Alberto Oliveira de Souza Junior, J. Bispo, J. M. P. Cardoso, P. C. Diniz, and E. Marques, “Exploration of FPGA-Based Hardware Designs for QR Decomposition for Solving Stiff ODE Numerical Methods Using the HARP Hybrid Architecture,” <i>Electronics</i>, 2020.","short":"C. Alberto Oliveira de Souza Junior, J. Bispo, J.M.P. Cardoso, P.C. Diniz, E. Marques, Electronics (2020).","chicago":"Alberto Oliveira de Souza Junior, Carlos, João Bispo, João M. P. Cardoso, Pedro C. Diniz, and Eduardo Marques. “Exploration of FPGA-Based Hardware Designs for QR Decomposition for Solving Stiff ODE Numerical Methods Using the HARP Hybrid Architecture.” <i>Electronics</i>, 2020. <a href=\"https://doi.org/10.3390/electronics9050843\">https://doi.org/10.3390/electronics9050843</a>."},"publication":"Electronics","abstract":[{"text":"<jats:p>In this article, we focus on the acceleration of a chemical reaction simulation that relies on a system of stiff ordinary differential equation (ODEs) targeting heterogeneous computing systems with CPUs and field-programmable gate arrays (FPGAs). Specifically, we target an essential kernel of the coupled chemistry aerosol-tracer transport model to the Brazilian developments on the regional atmospheric modeling system (CCATT-BRAMS). We focus on a linear solve step using the QR factorization based on the modified Gram-Schmidt method as the basis of the ODE solver in this application. We target Intel hardware accelerator research program (HARP) architecture with the OpenCL programming environment for these early experiments. Our design exploration reveals a hardware design that is up to 4 times faster than the original iterative Jacobi method used in this solver. Still, even with hardware support, the overall performance of our QR-based hardware is lower than its original software version.</jats:p>","lang":"eng"}],"date_created":"2020-07-08T08:18:59Z","type":"journal_article","keyword":["pc2-harp-ressources"],"publication_identifier":{"issn":["2079-9292"]},"author":[{"last_name":"Alberto Oliveira de Souza Junior","first_name":"Carlos","full_name":"Alberto Oliveira de Souza Junior, Carlos"},{"full_name":"Bispo, João","last_name":"Bispo","first_name":"João"},{"last_name":"Cardoso","first_name":"João M. P.","full_name":"Cardoso, João M. P."},{"first_name":"Pedro C.","last_name":"Diniz","full_name":"Diniz, Pedro C."},{"full_name":"Marques, Eduardo","first_name":"Eduardo","last_name":"Marques"}],"status":"public","title":"Exploration of FPGA-Based Hardware Designs for QR Decomposition for Solving Stiff ODE Numerical Methods Using the HARP Hybrid Architecture","year":"2020","date_updated":"2022-01-06T06:53:09Z","publication_status":"published","language":[{"iso":"eng"}],"_id":"17359","article_number":"843","doi":"10.3390/electronics9050843","user_id":"61189"},{"date_created":"2020-07-09T09:12:30Z","department":[{"_id":"178"}],"type":"book_chapter","publication":"Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in elderly care ","language":[{"iso":"eng"}],"main_file_link":[{"open_access":"1","url":"https://www.diva-portal.org/smash/get/diva2:1432161/FULLTEXT01.pdf"}],"doi":"10.1515/9783110677485-009","author":[{"full_name":"Hoppe, Julia Amelie","last_name":"Hoppe","first_name":"Julia Amelie","id":"73093"},{"last_name":"Johansson-Pajala","first_name":"Rose-Marie","full_name":"Johansson-Pajala, Rose-Marie"},{"last_name":"Gustafsson","first_name":"Christine","full_name":"Gustafsson, Christine"},{"last_name":"Melkas","first_name":"Helinä","full_name":"Melkas, Helinä"},{"first_name":"Outi","last_name":"Tusku","full_name":"Tusku, Outi"},{"full_name":"Pekkarinen, Satu","last_name":"Pekkarinen","first_name":"Satu"},{"last_name":"Hennala","first_name":"Lea","full_name":"Hennala, Lea"},{"id":"72497","full_name":"Thommes, Kirsten","first_name":"Kirsten","last_name":"Thommes"}],"year":"2020","title":"Assistive robots in care: Expectations and perceptions of older people","publication_status":"published","date_updated":"2022-01-06T06:53:09Z","place":"Berlin / Boston","oa":"1","citation":{"bibtex":"@inbook{Hoppe_Johansson-Pajala_Gustafsson_Melkas_Tusku_Pekkarinen_Hennala_Thommes_2020, place={Berlin / Boston}, title={Assistive robots in care: Expectations and perceptions of older people}, DOI={<a href=\"https://doi.org/10.1515/9783110677485-009\">10.1515/9783110677485-009</a>}, booktitle={Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in elderly care }, publisher={De Gruyter}, author={Hoppe, Julia Amelie and Johansson-Pajala, Rose-Marie and Gustafsson, Christine and Melkas, Helinä and Tusku, Outi and Pekkarinen, Satu and Hennala, Lea and Thommes, Kirsten}, editor={Haltaufderheide, Joschka and Hovemann, Johanna and Vollmann, JochenEditors}, year={2020}, pages={139–156} }","short":"J.A. Hoppe, R.-M. Johansson-Pajala, C. Gustafsson, H. Melkas, O. Tusku, S. Pekkarinen, L. Hennala, K. Thommes, in: J. Haltaufderheide, J. Hovemann, J. Vollmann (Eds.), Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in Elderly Care , De Gruyter, Berlin / Boston, 2020, pp. 139–156.","ama":"Hoppe JA, Johansson-Pajala R-M, Gustafsson C, et al. Assistive robots in care: Expectations and perceptions of older people. In: Haltaufderheide J, Hovemann J, Vollmann J, eds. <i>Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in Elderly Care </i>. Berlin / Boston: De Gruyter; 2020:139-156. doi:<a href=\"https://doi.org/10.1515/9783110677485-009\">10.1515/9783110677485-009</a>","chicago":"Hoppe, Julia Amelie, Rose-Marie Johansson-Pajala, Christine Gustafsson, Helinä Melkas, Outi Tusku, Satu Pekkarinen, Lea Hennala, and Kirsten Thommes. “Assistive Robots in Care: Expectations and Perceptions of Older People.” In <i>Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in Elderly Care </i>, edited by Joschka Haltaufderheide, Johanna Hovemann, and Jochen Vollmann, 139–56. Berlin / Boston: De Gruyter, 2020. <a href=\"https://doi.org/10.1515/9783110677485-009\">https://doi.org/10.1515/9783110677485-009</a>.","ieee":"J. A. Hoppe <i>et al.</i>, “Assistive robots in care: Expectations and perceptions of older people,” in <i>Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in elderly care </i>, J. Haltaufderheide, J. Hovemann, and J. Vollmann, Eds. Berlin / Boston: De Gruyter, 2020, pp. 139–156.","mla":"Hoppe, Julia Amelie, et al. “Assistive Robots in Care: Expectations and Perceptions of Older People.” <i>Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in Elderly Care </i>, edited by Joschka Haltaufderheide et al., De Gruyter, 2020, pp. 139–56, doi:<a href=\"https://doi.org/10.1515/9783110677485-009\">10.1515/9783110677485-009</a>.","apa":"Hoppe, J. A., Johansson-Pajala, R.-M., Gustafsson, C., Melkas, H., Tusku, O., Pekkarinen, S., … Thommes, K. (2020). Assistive robots in care: Expectations and perceptions of older people. In J. Haltaufderheide, J. Hovemann, &#38; J. Vollmann (Eds.), <i>Aging between Participation and Simulation - Ethical Dimensions of Socially Assistive Technologies in elderly care </i> (pp. 139–156). Berlin / Boston: De Gruyter. <a href=\"https://doi.org/10.1515/9783110677485-009\">https://doi.org/10.1515/9783110677485-009</a>"},"project":[{"grant_number":"16SV7954","_id":"46","name":"Use of care robots in welfare services: New models for effective orientation"}],"_id":"17367","publisher":"De Gruyter","page":"139-156","editor":[{"full_name":"Haltaufderheide, Joschka","last_name":"Haltaufderheide","first_name":"Joschka"},{"full_name":"Hovemann, Johanna","last_name":"Hovemann","first_name":"Johanna"},{"full_name":"Vollmann, Jochen","first_name":"Jochen","last_name":"Vollmann"}],"user_id":"49071","status":"public"},{"place":"Cham","date_created":"2020-09-01T13:49:42Z","type":"book_chapter","department":[{"_id":"534"},{"_id":"624"},{"_id":"27"},{"_id":"66"},{"_id":"219"}],"publication":"Industrializing Additive Manufacturing","citation":{"mla":"Nickchen, Tobias, et al. “Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain.” <i>Industrializing Additive Manufacturing</i>, 2020, doi:<a href=\"https://doi.org/10.1007/978-3-030-54334-1_4\">10.1007/978-3-030-54334-1_4</a>.","bibtex":"@inbook{Nickchen_Engels_Lohn_2020, place={Cham}, title={Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain}, DOI={<a href=\"https://doi.org/10.1007/978-3-030-54334-1_4\">10.1007/978-3-030-54334-1_4</a>}, booktitle={Industrializing Additive Manufacturing}, author={Nickchen, Tobias and Engels, Gregor and Lohn, Johannes}, year={2020} }","ama":"Nickchen T, Engels G, Lohn J. Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain. In: <i>Industrializing Additive Manufacturing</i>. Cham; 2020. doi:<a href=\"https://doi.org/10.1007/978-3-030-54334-1_4\">10.1007/978-3-030-54334-1_4</a>","ieee":"T. Nickchen, G. Engels, and J. Lohn, “Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain,” in <i>Industrializing Additive Manufacturing</i>, Cham, 2020.","apa":"Nickchen, T., Engels, G., &#38; Lohn, J. (2020). Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain. In <i>Industrializing Additive Manufacturing</i>. Cham. <a href=\"https://doi.org/10.1007/978-3-030-54334-1_4\">https://doi.org/10.1007/978-3-030-54334-1_4</a>","chicago":"Nickchen, Tobias, Gregor Engels, and Johannes Lohn. “Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain.” In <i>Industrializing Additive Manufacturing</i>. Cham, 2020. <a href=\"https://doi.org/10.1007/978-3-030-54334-1_4\">https://doi.org/10.1007/978-3-030-54334-1_4</a>.","short":"T. Nickchen, G. Engels, J. Lohn, in: Industrializing Additive Manufacturing, Cham, 2020."},"_id":"18789","language":[{"iso":"eng"}],"ddc":["000"],"doi":"10.1007/978-3-030-54334-1_4","user_id":"27340","year":"2020","status":"public","title":"Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain","conference":{"end_date":"2020-09-03","start_date":"2020-09-01"},"publication_identifier":{"isbn":["9783030543334","9783030543341"]},"author":[{"last_name":"Nickchen","first_name":"Tobias","full_name":"Nickchen, Tobias"},{"first_name":"Gregor","last_name":"Engels","full_name":"Engels, Gregor"},{"full_name":"Lohn, Johannes","first_name":"Johannes","last_name":"Lohn"}],"date_updated":"2022-01-06T06:53:52Z","publication_status":"published"},{"publication":"Chemie Ingenieur Technik","citation":{"mla":"Bothe, Mike, et al. “Dynamische Simulation von Industriellen Kreislaufprozessen Zur Vermeidung von Notfallsituationen Bei Der Chemischen Absorption.” <i>Chemie Ingenieur Technik</i>, 2020, pp. 1192–1192, doi:<a href=\"https://doi.org/10.1002/cite.202055174\">10.1002/cite.202055174</a>.","bibtex":"@article{Bothe_Fedorov_Frei_Lutters_Kenig_2020, title={Dynamische Simulation von industriellen Kreislaufprozessen zur Vermeidung von Notfallsituationen bei der chemischen Absorption}, DOI={<a href=\"https://doi.org/10.1002/cite.202055174\">10.1002/cite.202055174</a>}, journal={Chemie Ingenieur Technik}, author={Bothe, Mike and Fedorov, A. and Frei, H. and Lutters, N. and Kenig, E. Y.}, year={2020}, pages={1192–1192} }","ama":"Bothe M, Fedorov A, Frei H, Lutters N, Kenig EY. Dynamische Simulation von industriellen Kreislaufprozessen zur Vermeidung von Notfallsituationen bei der chemischen Absorption. <i>Chemie Ingenieur Technik</i>. 2020:1192-1192. doi:<a href=\"https://doi.org/10.1002/cite.202055174\">10.1002/cite.202055174</a>","ieee":"M. Bothe, A. Fedorov, H. Frei, N. Lutters, and E. Y. Kenig, “Dynamische Simulation von industriellen Kreislaufprozessen zur Vermeidung von Notfallsituationen bei der chemischen Absorption,” <i>Chemie Ingenieur Technik</i>, pp. 1192–1192, 2020.","apa":"Bothe, M., Fedorov, A., Frei, H., Lutters, N., &#38; Kenig, E. Y. (2020). Dynamische Simulation von industriellen Kreislaufprozessen zur Vermeidung von Notfallsituationen bei der chemischen Absorption. <i>Chemie Ingenieur Technik</i>, 1192–1192. <a href=\"https://doi.org/10.1002/cite.202055174\">https://doi.org/10.1002/cite.202055174</a>","chicago":"Bothe, Mike, A. Fedorov, H. Frei, N. Lutters, and E. Y. Kenig. “Dynamische Simulation von Industriellen Kreislaufprozessen Zur Vermeidung von Notfallsituationen Bei Der Chemischen Absorption.” <i>Chemie Ingenieur Technik</i>, 2020, 1192–1192. <a href=\"https://doi.org/10.1002/cite.202055174\">https://doi.org/10.1002/cite.202055174</a>.","short":"M. Bothe, A. Fedorov, H. Frei, N. Lutters, E.Y. Kenig, Chemie Ingenieur Technik (2020) 1192–1192."},"type":"journal_article","department":[{"_id":"9"},{"_id":"145"}],"date_created":"2021-08-17T07:23:22Z","publication_status":"published","date_updated":"2022-01-06T06:55:53Z","title":"Dynamische Simulation von industriellen Kreislaufprozessen zur Vermeidung von Notfallsituationen bei der chemischen Absorption","year":"2020","status":"public","publication_identifier":{"issn":["0009-286X","1522-2640"]},"author":[{"full_name":"Bothe, Mike","last_name":"Bothe","first_name":"Mike","id":"72973"},{"full_name":"Fedorov, A.","first_name":"A.","last_name":"Fedorov"},{"first_name":"H.","last_name":"Frei","full_name":"Frei, H."},{"last_name":"Lutters","first_name":"N.","full_name":"Lutters, N."},{"full_name":"Kenig, E. Y.","last_name":"Kenig","first_name":"E. Y."}],"user_id":"14931","doi":"10.1002/cite.202055174","page":"1192-1192","_id":"23422","language":[{"iso":"eng"}]},{"language":[{"iso":"eng"}],"_id":"23599","page":"1108-1129","volume":53,"user_id":"84268","doi":"10.1107/s1600576720005476","author":[{"full_name":"Savikhin, Victoria","first_name":"Victoria","last_name":"Savikhin"},{"id":"84268","full_name":"Steinrück, Hans-Georg","last_name":"Steinrück","first_name":"Hans-Georg","orcid":"0000-0001-6373-0877"},{"first_name":"Ru-Ze","last_name":"Liang","full_name":"Liang, Ru-Ze"},{"full_name":"Collins, Brian A.","first_name":"Brian A.","last_name":"Collins"},{"first_name":"Stefan D.","last_name":"Oosterhout","full_name":"Oosterhout, Stefan D."},{"full_name":"Beaujuge, Pierre M.","first_name":"Pierre M.","last_name":"Beaujuge"},{"full_name":"Toney, Michael F.","last_name":"Toney","first_name":"Michael F."}],"publication_identifier":{"issn":["1600-5767"]},"title":"GIWAXS-SIIRkit: scattering intensity, indexing and refraction calculation toolkit for grazing-incidence wide-angle X-ray scattering of organic materials","status":"public","year":"2020","intvolume":"        53","publication_status":"published","date_updated":"2022-01-06T06:55:57Z","date_created":"2021-09-01T09:07:00Z","department":[{"_id":"633"}],"type":"journal_article","citation":{"mla":"Savikhin, Victoria, et al. “GIWAXS-SIIRkit: Scattering Intensity, Indexing and Refraction Calculation Toolkit for Grazing-Incidence Wide-Angle X-Ray Scattering of Organic Materials.” <i>Journal of Applied Crystallography</i>, vol. 53, 2020, pp. 1108–29, doi:<a href=\"https://doi.org/10.1107/s1600576720005476\">10.1107/s1600576720005476</a>.","bibtex":"@article{Savikhin_Steinrück_Liang_Collins_Oosterhout_Beaujuge_Toney_2020, title={GIWAXS-SIIRkit: scattering intensity, indexing and refraction calculation toolkit for grazing-incidence wide-angle X-ray scattering of organic materials}, volume={53}, DOI={<a href=\"https://doi.org/10.1107/s1600576720005476\">10.1107/s1600576720005476</a>}, journal={Journal of Applied Crystallography}, author={Savikhin, Victoria and Steinrück, Hans-Georg and Liang, Ru-Ze and Collins, Brian A. and Oosterhout, Stefan D. and Beaujuge, Pierre M. and Toney, Michael F.}, year={2020}, pages={1108–1129} }","ama":"Savikhin V, Steinrück H-G, Liang R-Z, et al. GIWAXS-SIIRkit: scattering intensity, indexing and refraction calculation toolkit for grazing-incidence wide-angle X-ray scattering of organic materials. <i>Journal of Applied Crystallography</i>. 2020;53:1108-1129. doi:<a href=\"https://doi.org/10.1107/s1600576720005476\">10.1107/s1600576720005476</a>","ieee":"V. Savikhin <i>et al.</i>, “GIWAXS-SIIRkit: scattering intensity, indexing and refraction calculation toolkit for grazing-incidence wide-angle X-ray scattering of organic materials,” <i>Journal of Applied Crystallography</i>, vol. 53, pp. 1108–1129, 2020, doi: <a href=\"https://doi.org/10.1107/s1600576720005476\">10.1107/s1600576720005476</a>.","apa":"Savikhin, V., Steinrück, H.-G., Liang, R.-Z., Collins, B. A., Oosterhout, S. D., Beaujuge, P. M., &#38; Toney, M. F. (2020). GIWAXS-SIIRkit: scattering intensity, indexing and refraction calculation toolkit for grazing-incidence wide-angle X-ray scattering of organic materials. <i>Journal of Applied Crystallography</i>, <i>53</i>, 1108–1129. <a href=\"https://doi.org/10.1107/s1600576720005476\">https://doi.org/10.1107/s1600576720005476</a>","short":"V. Savikhin, H.-G. Steinrück, R.-Z. Liang, B.A. Collins, S.D. Oosterhout, P.M. Beaujuge, M.F. Toney, Journal of Applied Crystallography 53 (2020) 1108–1129.","chicago":"Savikhin, Victoria, Hans-Georg Steinrück, Ru-Ze Liang, Brian A. Collins, Stefan D. Oosterhout, Pierre M. Beaujuge, and Michael F. Toney. “GIWAXS-SIIRkit: Scattering Intensity, Indexing and Refraction Calculation Toolkit for Grazing-Incidence Wide-Angle X-Ray Scattering of Organic Materials.” <i>Journal of Applied Crystallography</i> 53 (2020): 1108–29. <a href=\"https://doi.org/10.1107/s1600576720005476\">https://doi.org/10.1107/s1600576720005476</a>."},"publication":"Journal of Applied Crystallography","abstract":[{"text":"<jats:p>Grazing-incidence wide-angle X-ray scattering (GIWAXS) has become an increasingly popular technique for quantitative structural characterization and comparison of thin films. For this purpose, accurate intensity normalization and peak position determination are crucial. At present, few tools exist to estimate the uncertainties of these measurements. Here, a simulation package is introduced called <jats:italic>GIWAXS-SIIRkit</jats:italic>, where SIIR stands for scattering intensity, indexing and refraction. The package contains several tools that are freely available for download and can be executed in MATLAB. The package includes three functionalities: estimation of the relative scattering intensity and the corresponding uncertainty based on experimental setup and sample dimensions; extraction and indexing of peak positions to approximate the crystal structure of organic materials starting from calibrated GIWAXS patterns; and analysis of the effects of refraction on peak positions. Each tool is based on a graphical user interface and designed to have a short learning curve. A user guide is provided with detailed usage instruction, tips for adding functionality and customization, and exemplary files.</jats:p>","lang":"eng"}]},{"publication":"Industrial & Engineering Chemistry Research","citation":{"chicago":"Braz, Catarina G., Nicole Lutters, Jorge Rocha, Ricardo Alvim, Eugeny Kenig, and Henrique A. Matos. “Modeling and Simulation of an Industrial Formaldehyde Absorption System.” <i>Industrial &#38; Engineering Chemistry Research</i> 59 (2020): 5996–6006. <a href=\"https://doi.org/10.1021/acs.iecr.9b07013\">https://doi.org/10.1021/acs.iecr.9b07013</a>.","short":"C.G. Braz, N. Lutters, J. Rocha, R. Alvim, E. Kenig, H.A. Matos, Industrial &#38; Engineering Chemistry Research 59 (2020) 5996–6006.","apa":"Braz, C. G., Lutters, N., Rocha, J., Alvim, R., Kenig, E., &#38; Matos, H. A. (2020). Modeling and Simulation of an Industrial Formaldehyde Absorption System. <i>Industrial &#38; Engineering Chemistry Research</i>, <i>59</i>, 5996–6006. <a href=\"https://doi.org/10.1021/acs.iecr.9b07013\">https://doi.org/10.1021/acs.iecr.9b07013</a>","ieee":"C. G. Braz, N. Lutters, J. Rocha, R. Alvim, E. Kenig, and H. A. Matos, “Modeling and Simulation of an Industrial Formaldehyde Absorption System,” <i>Industrial &#38; Engineering Chemistry Research</i>, vol. 59, pp. 5996–6006, 2020, doi: <a href=\"https://doi.org/10.1021/acs.iecr.9b07013\">10.1021/acs.iecr.9b07013</a>.","ama":"Braz CG, Lutters N, Rocha J, Alvim R, Kenig E, Matos HA. Modeling and Simulation of an Industrial Formaldehyde Absorption System. <i>Industrial &#38; Engineering Chemistry Research</i>. 2020;59:5996-6006. doi:<a href=\"https://doi.org/10.1021/acs.iecr.9b07013\">10.1021/acs.iecr.9b07013</a>","bibtex":"@article{Braz_Lutters_Rocha_Alvim_Kenig_Matos_2020, title={Modeling and Simulation of an Industrial Formaldehyde Absorption System}, volume={59}, DOI={<a href=\"https://doi.org/10.1021/acs.iecr.9b07013\">10.1021/acs.iecr.9b07013</a>}, journal={Industrial &#38; Engineering Chemistry Research}, author={Braz, Catarina G. and Lutters, Nicole and Rocha, Jorge and Alvim, Ricardo and Kenig, Eugeny and Matos, Henrique A.}, year={2020}, pages={5996–6006} }","mla":"Braz, Catarina G., et al. “Modeling and Simulation of an Industrial Formaldehyde Absorption System.” <i>Industrial &#38; Engineering Chemistry Research</i>, vol. 59, 2020, pp. 5996–6006, doi:<a href=\"https://doi.org/10.1021/acs.iecr.9b07013\">10.1021/acs.iecr.9b07013</a>."},"type":"journal_article","department":[{"_id":"9"},{"_id":"145"}],"date_created":"2021-09-06T08:50:59Z","publication_status":"published","date_updated":"2022-01-06T06:55:59Z","intvolume":"        59","status":"public","title":"Modeling and Simulation of an Industrial Formaldehyde Absorption System","year":"2020","publication_identifier":{"issn":["0888-5885","1520-5045"]},"author":[{"full_name":"Braz, Catarina G.","first_name":"Catarina G.","last_name":"Braz"},{"id":"22006","last_name":"Lutters","first_name":"Nicole","full_name":"Lutters, Nicole"},{"first_name":"Jorge","last_name":"Rocha","full_name":"Rocha, Jorge"},{"first_name":"Ricardo","last_name":"Alvim","full_name":"Alvim, Ricardo"},{"first_name":"Eugeny","last_name":"Kenig","full_name":"Kenig, Eugeny","id":"665"},{"first_name":"Henrique A.","last_name":"Matos","full_name":"Matos, Henrique A."}],"user_id":"22006","doi":"10.1021/acs.iecr.9b07013","volume":59,"page":"5996-6006","language":[{"iso":"eng"}],"_id":"23780"},{"quality_controlled":"1","abstract":[{"text":"Regarding the design of single screw extruders, the prediction of the throughput needs to be of high accuracy. The calculation of the solids conveying throughput is particularly important for extruders with a grooved feed section. In contrast to smooth barrel extruders the throughput of the entire plant is determined at the feed section. Various simplifications are necessary for an analytical modelling of the solids conveying, e.g. the classification into conveying cases, the assumption of solid block flow and the assumption of pressure anisotropy coefficients. In numerical simulations with the Discrete Element Method (DEM), which has recently been successfully used to describe solids conveying in smooth barrel extruders, the simplifications mentioned above are not taken into account. Here, the pellets are approximated as spherical particles or particles composed of spheres. Based on virtual overlaps, contact models and the solution of Newton's equations of motion, a more complex consideration of the pellet flow is possible. In each iteration step of the simulation, the particle velocities, contact forces and derived quantities, e.g. the mass throughput in the screw channel and the grooves or the radial pressure build-up along the grooved barrel can be evaluated. Therefore, a DEM simulation model can be investigated by means of statistical design of experiments in order to convert the target values into a metamodel by regression. Long computation times of numerical simulations will be avoided in this matter as well as too simple assumptions of analytical approaches. The influencing parameters to be simulated are divided into material, geometry and process parameters. Relevant material parameters are the coefficients of friction of the polymer-polymer and polymer-steel surface as well as the restitution coefficient and the particle diameter. The geometry is varied in the form of the screw diameter, the channel depth and pitch, the number of grooves and their width, depth and angle. By varying the angle, both conventional axial grooves and helical grooves are taken into account. Finally, the process parameters speed and backpressure are also considered in the simulations. In order to reduce the simulation effort, irrelevant parameters are identified in preliminary investigations.\r\n","lang":"eng"}],"publication":"Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology","citation":{"apa":"Schöppner, V., &#38; Brüning, F. (2020). Development of a Solids Conveying Throughput Model for Grooved Barrel Extruders based on Discrete Element Simulations. In C. Hopmann &#38; R. Dahlmann (Eds.), <i>Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology</i>. Springer.","ieee":"V. Schöppner and F. Brüning, “Development of a Solids Conveying Throughput Model for Grooved Barrel Extruders based on Discrete Element Simulations,” in <i>Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology</i>, 2020.","short":"V. Schöppner, F. Brüning, in: C. Hopmann, R. Dahlmann (Eds.), Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology, Springer, 2020.","chicago":"Schöppner, Volker, and Florian Brüning. “Development of a Solids Conveying Throughput Model for Grooved Barrel Extruders Based on Discrete Element Simulations.” In <i>Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology</i>, edited by Christian Hopmann and Rainer Dahlmann. Springer, 2020.","mla":"Schöppner, Volker, and Florian Brüning. “Development of a Solids Conveying Throughput Model for Grooved Barrel Extruders Based on Discrete Element Simulations.” <i>Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology</i>, edited by Christian Hopmann and Rainer Dahlmann, Springer, 2020.","ama":"Schöppner V, Brüning F. Development of a Solids Conveying Throughput Model for Grooved Barrel Extruders based on Discrete Element Simulations. In: Hopmann C, Dahlmann R, eds. <i>Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology</i>. Springer; 2020.","bibtex":"@inproceedings{Schöppner_Brüning_2020, title={Development of a Solids Conveying Throughput Model for Grooved Barrel Extruders based on Discrete Element Simulations}, booktitle={Advances in Polymer Processing 2020: Proceedings of the International Symposium on Plastics Technology}, publisher={Springer}, author={Schöppner, Volker and Brüning, Florian}, editor={Hopmann, Christian and Dahlmann, Rainer}, year={2020} }"},"type":"conference","department":[{"_id":"9"},{"_id":"367"}],"date_created":"2021-09-07T11:21:23Z","date_updated":"2022-01-06T06:56:02Z","publication_status":"published","year":"2020","title":"Development of a Solids Conveying Throughput Model for Grooved Barrel Extruders based on Discrete Element Simulations","status":"public","author":[{"id":"20530","full_name":"Schöppner, Volker","first_name":"Volker","last_name":"Schöppner"},{"first_name":"Florian","last_name":"Brüning","full_name":"Brüning, Florian","id":"72920"}],"publication_identifier":{"unknown":["9783662608081"]},"user_id":"72920","editor":[{"last_name":"Hopmann","first_name":"Christian","full_name":"Hopmann, Christian"},{"first_name":"Rainer","last_name":"Dahlmann","full_name":"Dahlmann, Rainer"}],"publisher":"Springer","_id":"23865","language":[{"iso":"eng"}]},{"_id":"24011","language":[{"iso":"ger"}],"page":"207-216","volume":"DVM-Bericht 252","user_id":"45673","author":[{"full_name":"Joy, Tintu David","first_name":"Tintu David","last_name":"Joy","id":"30821"},{"last_name":"Kullmer","first_name":"Gunter","full_name":"Kullmer, Gunter","id":"291"},{"id":"27356","first_name":"Lena","last_name":"Risse","full_name":"Risse, Lena"}],"conference":{"end_date":"2020-02-20","location":"Hamburg","start_date":"2020-02-19","name":"Arbeitskreis: Bruchmechanische Werkstoff- und Bauteilbewertung: Beanspruchungsanalyse, Prüfmethoden und Anwendungen"},"title":"Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D","year":"2020","status":"public","date_updated":"2022-01-06T06:56:05Z","date_created":"2021-09-09T10:11:40Z","department":[{"_id":"143"}],"type":"conference","citation":{"mla":"Joy, Tintu David, et al. <i>Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D</i>. 2020, pp. 207–16.","bibtex":"@inproceedings{Joy_Kullmer_Risse_2020, title={Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D}, volume={DVM-Bericht 252}, author={Joy, Tintu David and Kullmer, Gunter and Risse, Lena}, year={2020}, pages={207–216} }","ama":"Joy TD, Kullmer G, Risse L. Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D. In: Vol DVM-Bericht 252. ; 2020:207-216.","ieee":"T. D. Joy, G. Kullmer, and L. Risse, “Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D,” Hamburg, 2020, vol. DVM-Bericht 252, pp. 207–216.","apa":"Joy, T. D., Kullmer, G., &#38; Risse, L. (2020). <i>Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D</i>. <i>DVM-Bericht 252</i>, 207–216.","short":"T.D. Joy, G. Kullmer, L. Risse, in: 2020, pp. 207–216.","chicago":"Joy, Tintu David, Gunter Kullmer, and Lena Risse. “Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D,” DVM-Bericht 252:207–16, 2020."}}]
