[{"date_created":"2024-05-02T13:25:29Z","title":"Untersuchung piezoelektrischer Materialeigenschaften unter hydrostatischer Last","year":"2024","ddc":["620"],"language":[{"iso":"ger"}],"publication":"Fortschritte der Akustik - DAGA 2024","abstract":[{"text":"Piezoelektrische Keramiken finden sowohl in Sensoren als auch in Aktoren Anwendung. Bei Hochleistungs-Ultraschallanwendungen sind diese Komponenten erheblichen elektrischen und mechanischen Belastungen ausgesetzt, was zum Auftreten nichtlinearer Effekte führt. Um das nichtlineare Materialverhalten piezoelektrischer Keramiken zu charakterisieren, kann eine statische mechanische Last aufgebracht werden, die den mechanischen Arbeitspunkt verschiebt. Durch Variation dieser statischen mechanischen Belastung kann das lineare Verhalten in jedem Betriebspunkt charakterisiert werden, woraufhin die nichtlinearen Eigenschaften des Materials angenähert werden können. Allerdings ist die Sicherstellung einer homogenen mechanischen Last anspruchsvoll. Alternativ kann eine hydrostatische Belastung realisiert werden, indem die Probe in einen Behälter gegeben wird, der mit unter Druck stehendem Fluid gefüllt ist. Dadurch wird eine gleichmäßige Lastverteilung über die Oberfläche der Probe erreicht.\r\n\r\nIn diesem Beitrag wird ein Versuchsaufbau zur Durchführung elektrischer Impedanzmessungen an piezoelektrischen Keramiken in einem Druckbehälter vorgestellt. Die Probe wird im Inneren des Druckbehälters elektrisch kontaktiert. Unter Verwendung von unter Druck stehendem Argon wird auf diese Weise die Messung der elektrischen Impedanz unter hydrostatischer Last von bis zu 200 bar ermöglicht. Anschließend wird ein inverses Verfahren angewendet, um die Materialparameter in Abhängigkeit von der aufgebrachten Last zu ermitteln.","lang":"ger"}],"file":[{"date_created":"2024-05-02T13:38:37Z","creator":"ofriesen","date_updated":"2024-05-02T14:07:24Z","file_name":"daga2024friesen.pdf","file_id":"53826","access_level":"open_access","file_size":453108,"content_type":"application/pdf","relation":"main_file"}],"oa":"1","date_updated":"2026-01-05T07:56:21Z","author":[{"full_name":"Friesen, Olga","id":"44026","last_name":"Friesen","first_name":"Olga"},{"full_name":"Pasha, Muhammad Ahsan","last_name":"Pasha","first_name":"Muhammad Ahsan"},{"first_name":"Max","full_name":"Schwengelbeck, Max","last_name":"Schwengelbeck"},{"first_name":"Leander","full_name":"Claes, Leander","id":"11829","last_name":"Claes","orcid":"0000-0002-4393-268X"},{"last_name":"Baumhögger","full_name":"Baumhögger, Elmar","id":"15164","first_name":"Elmar"},{"last_name":"Henning","id":"213","full_name":"Henning, Bernd","first_name":"Bernd"}],"conference":{"location":"Hannover","end_date":"2024-03-21","start_date":"2024-03-18","name":"DAGA 2024 - 50. JAHRESTAGUNG FÜR AKUSTIK"},"publication_status":"published","has_accepted_license":"1","citation":{"short":"O. Friesen, M.A. Pasha, M. Schwengelbeck, L. Claes, E. Baumhögger, B. Henning, in: Fortschritte der Akustik - DAGA 2024, 2024, pp. 1117–1120.","bibtex":"@inproceedings{Friesen_Pasha_Schwengelbeck_Claes_Baumhögger_Henning_2024, title={Untersuchung piezoelektrischer Materialeigenschaften unter hydrostatischer Last}, booktitle={Fortschritte der Akustik - DAGA 2024}, author={Friesen, Olga and Pasha, Muhammad Ahsan and Schwengelbeck, Max and Claes, Leander and Baumhögger, Elmar and Henning, Bernd}, year={2024}, pages={1117–1120} }","mla":"Friesen, Olga, et al. “Untersuchung piezoelektrischer Materialeigenschaften unter hydrostatischer Last.” <i>Fortschritte der Akustik - DAGA 2024</i>, 2024, pp. 1117–1120.","apa":"Friesen, O., Pasha, M. A., Schwengelbeck, M., Claes, L., Baumhögger, E., &#38; Henning, B. (2024). Untersuchung piezoelektrischer Materialeigenschaften unter hydrostatischer Last. <i>Fortschritte der Akustik - DAGA 2024</i>, 1117–1120.","ama":"Friesen O, Pasha MA, Schwengelbeck M, Claes L, Baumhögger E, Henning B. Untersuchung piezoelektrischer Materialeigenschaften unter hydrostatischer Last. In: <i>Fortschritte der Akustik - DAGA 2024</i>. ; 2024:1117–1120.","chicago":"Friesen, Olga, Muhammad Ahsan Pasha, Max Schwengelbeck, Leander Claes, Elmar Baumhögger, and Bernd Henning. “Untersuchung piezoelektrischer Materialeigenschaften unter hydrostatischer Last.” In <i>Fortschritte der Akustik - DAGA 2024</i>, 1117–1120, 2024.","ieee":"O. Friesen, M. A. Pasha, M. Schwengelbeck, L. Claes, E. Baumhögger, and B. Henning, “Untersuchung piezoelektrischer Materialeigenschaften unter hydrostatischer Last,” in <i>Fortschritte der Akustik - DAGA 2024</i>, Hannover, 2024, pp. 1117–1120."},"page":"1117–1120","project":[{"_id":"245","name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)"}],"_id":"53822","user_id":"11829","file_date_updated":"2024-05-02T14:07:24Z","type":"conference","status":"public"},{"has_accepted_license":"1","year":"2024","citation":{"apa":"Koch, K., Claes, L., Jurgelucks, B., Meihost, L., &#38; Henning, B. (2024). Inverses Verfahren zur Identifikation piezoelektrischer Materialparameter unterstützt durch neuronale Netze. In D. Gesellschaft für Akustik e.V. (Ed.), <i>Fortschritte der Akustik - DAGA 2024</i> (pp. 1113–1116).","short":"K. Koch, L. Claes, B. Jurgelucks, L. Meihost, B. Henning, in: D. Gesellschaft für Akustik e.V. (Ed.), Fortschritte der Akustik - DAGA 2024, 2024, pp. 1113–1116.","bibtex":"@inproceedings{Koch_Claes_Jurgelucks_Meihost_Henning_2024, title={Inverses Verfahren zur Identifikation piezoelektrischer Materialparameter unterstützt durch neuronale Netze}, booktitle={Fortschritte der Akustik - DAGA 2024}, author={Koch, Kevin and Claes, Leander and Jurgelucks, Benjamin and Meihost, Lars and Henning, Bernd}, editor={Gesellschaft für Akustik e.V., Deutsche }, year={2024}, pages={1113–1116} }","mla":"Koch, Kevin, et al. “Inverses Verfahren zur Identifikation piezoelektrischer Materialparameter unterstützt durch neuronale Netze.” <i>Fortschritte der Akustik - DAGA 2024</i>, edited by Deutsche  Gesellschaft für Akustik e.V., 2024, pp. 1113–1116.","chicago":"Koch, Kevin, Leander Claes, Benjamin Jurgelucks, Lars Meihost, and Bernd Henning. “Inverses Verfahren zur Identifikation piezoelektrischer Materialparameter unterstützt durch neuronale Netze.” In <i>Fortschritte der Akustik - DAGA 2024</i>, edited by Deutsche  Gesellschaft für Akustik e.V., 1113–1116, 2024.","ieee":"K. Koch, L. Claes, B. Jurgelucks, L. Meihost, and B. Henning, “Inverses Verfahren zur Identifikation piezoelektrischer Materialparameter unterstützt durch neuronale Netze,” in <i>Fortschritte der Akustik - DAGA 2024</i>, 2024, pp. 1113–1116.","ama":"Koch K, Claes L, Jurgelucks B, Meihost L, Henning B. Inverses Verfahren zur Identifikation piezoelektrischer Materialparameter unterstützt durch neuronale Netze. In: Gesellschaft für Akustik e.V. D, ed. <i>Fortschritte der Akustik - DAGA 2024</i>. ; 2024:1113–1116."},"page":"1113–1116","oa":"1","date_updated":"2026-01-05T07:56:42Z","author":[{"full_name":"Koch, Kevin","last_name":"Koch","first_name":"Kevin"},{"last_name":"Claes","orcid":"0000-0002-4393-268X","id":"11829","full_name":"Claes, Leander","first_name":"Leander"},{"full_name":"Jurgelucks, Benjamin","last_name":"Jurgelucks","first_name":"Benjamin"},{"first_name":"Lars","full_name":"Meihost, Lars","id":"24769","last_name":"Meihost"},{"id":"213","full_name":"Henning, Bernd","last_name":"Henning","first_name":"Bernd"}],"date_created":"2024-05-02T13:34:01Z","title":"Inverses Verfahren zur Identifikation piezoelektrischer Materialparameter unterstützt durch neuronale Netze","conference":{"start_date":"2024-03-18","end_date":"2024-03-21"},"type":"conference","publication":"Fortschritte der Akustik - DAGA 2024","editor":[{"full_name":"Gesellschaft für Akustik e.V., Deutsche ","last_name":"Gesellschaft für Akustik e.V.","first_name":"Deutsche "}],"file":[{"content_type":"application/pdf","relation":"main_file","date_created":"2024-05-02T13:36:51Z","creator":"leanderc","date_updated":"2024-05-02T14:06:28Z","file_name":"daga2024koch.pdf","file_id":"53825","access_level":"open_access","file_size":365911}],"status":"public","project":[{"name":"ChaMP: Ein modellbasiertes Messverfahren zur Charakterisierung der frequenzabhängigen Materialeigenschaften von Piezokeramiken unter Verwendung eines einzelnen Probekörperindividuums","_id":"90"},{"name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"},{"_id":"245","name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)"}],"_id":"53824","user_id":"11829","department":[{"_id":"49"}],"ddc":["620"],"language":[{"iso":"ger"}],"file_date_updated":"2024-05-02T14:06:28Z"},{"date_updated":"2026-01-05T07:58:55Z","publisher":"IOP Publishing","oa":"1","volume":2822,"author":[{"first_name":"Olga","id":"44026","full_name":"Friesen, Olga","last_name":"Friesen"},{"full_name":"Claes, Leander","id":"11829","orcid":"0000-0002-4393-268X","last_name":"Claes","first_name":"Leander"},{"id":"38259","full_name":"Scheidemann, Claus","last_name":"Scheidemann","first_name":"Claus"},{"last_name":"Feldmann","full_name":"Feldmann, Nadine","id":"23082","first_name":"Nadine"},{"last_name":"Hemsel","id":"210","full_name":"Hemsel, Tobias","first_name":"Tobias"},{"first_name":"Bernd","last_name":"Henning","full_name":"Henning, Bernd","id":"213"}],"date_created":"2024-10-31T07:59:01Z","title":"Estimation of temperature-dependent piezoelectric material parameters using ring-shaped specimens","doi":"10.1088/1742-6596/2822/1/012125","main_file_link":[{"open_access":"1","url":"https://iopscience.iop.org/article/10.1088/1742-6596/2822/1/012125"}],"publication_identifier":{"issn":["1742-6596"]},"year":"2024","page":"012125","intvolume":"      2822","citation":{"apa":"Friesen, O., Claes, L., Scheidemann, C., Feldmann, N., Hemsel, T., &#38; Henning, B. (2024). Estimation of temperature-dependent piezoelectric material parameters using ring-shaped specimens. <i>2023 International Congress on Ultrasonics, Beijing, China</i>, <i>2822</i>, 012125. <a href=\"https://doi.org/10.1088/1742-6596/2822/1/012125\">https://doi.org/10.1088/1742-6596/2822/1/012125</a>","mla":"Friesen, Olga, et al. “Estimation of Temperature-Dependent Piezoelectric Material Parameters Using Ring-Shaped Specimens.” <i>2023 International Congress on Ultrasonics, Beijing, China</i>, vol. 2822, IOP Publishing, 2024, p. 012125, doi:<a href=\"https://doi.org/10.1088/1742-6596/2822/1/012125\">10.1088/1742-6596/2822/1/012125</a>.","short":"O. Friesen, L. Claes, C. Scheidemann, N. Feldmann, T. Hemsel, B. Henning, in: 2023 International Congress on Ultrasonics, Beijing, China, IOP Publishing, 2024, p. 012125.","bibtex":"@inproceedings{Friesen_Claes_Scheidemann_Feldmann_Hemsel_Henning_2024, title={Estimation of temperature-dependent piezoelectric material parameters using ring-shaped specimens}, volume={2822}, DOI={<a href=\"https://doi.org/10.1088/1742-6596/2822/1/012125\">10.1088/1742-6596/2822/1/012125</a>}, booktitle={2023 International Congress on Ultrasonics, Beijing, China}, publisher={IOP Publishing}, author={Friesen, Olga and Claes, Leander and Scheidemann, Claus and Feldmann, Nadine and Hemsel, Tobias and Henning, Bernd}, year={2024}, pages={012125} }","ama":"Friesen O, Claes L, Scheidemann C, Feldmann N, Hemsel T, Henning B. Estimation of temperature-dependent piezoelectric material parameters using ring-shaped specimens. In: <i>2023 International Congress on Ultrasonics, Beijing, China</i>. Vol 2822. IOP Publishing; 2024:012125. doi:<a href=\"https://doi.org/10.1088/1742-6596/2822/1/012125\">10.1088/1742-6596/2822/1/012125</a>","ieee":"O. Friesen, L. Claes, C. Scheidemann, N. Feldmann, T. Hemsel, and B. Henning, “Estimation of temperature-dependent piezoelectric material parameters using ring-shaped specimens,” in <i>2023 International Congress on Ultrasonics, Beijing, China</i>, 2024, vol. 2822, p. 012125, doi: <a href=\"https://doi.org/10.1088/1742-6596/2822/1/012125\">10.1088/1742-6596/2822/1/012125</a>.","chicago":"Friesen, Olga, Leander Claes, Claus Scheidemann, Nadine Feldmann, Tobias Hemsel, and Bernd Henning. “Estimation of Temperature-Dependent Piezoelectric Material Parameters Using Ring-Shaped Specimens.” In <i>2023 International Congress on Ultrasonics, Beijing, China</i>, 2822:012125. IOP Publishing, 2024. <a href=\"https://doi.org/10.1088/1742-6596/2822/1/012125\">https://doi.org/10.1088/1742-6596/2822/1/012125</a>."},"_id":"56834","project":[{"name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)","_id":"245"}],"department":[{"_id":"49"}],"user_id":"11829","language":[{"iso":"eng"}],"publication":"2023 International Congress on Ultrasonics, Beijing, China","type":"conference","status":"public"},{"year":"2024","citation":{"ama":"Koch K, Friesen O, Claes L. <i>Randomised Material Parameter Impedance Dataset of Piezoelectric Rings</i>. Zenodo; 2024. doi:<a href=\"https://doi.org/10.5281/zenodo.13143680\">10.5281/zenodo.13143680</a>","ieee":"K. Koch, O. Friesen, and L. Claes, <i>Randomised material parameter impedance dataset of piezoelectric rings</i>. Zenodo, 2024.","chicago":"Koch, Kevin, Olga Friesen, and Leander Claes. <i>Randomised Material Parameter Impedance Dataset of Piezoelectric Rings</i>. Zenodo, 2024. <a href=\"https://doi.org/10.5281/zenodo.13143680\">https://doi.org/10.5281/zenodo.13143680</a>.","bibtex":"@book{Koch_Friesen_Claes_2024, title={Randomised material parameter impedance dataset of piezoelectric rings}, DOI={<a href=\"https://doi.org/10.5281/zenodo.13143680\">10.5281/zenodo.13143680</a>}, publisher={Zenodo}, author={Koch, Kevin and Friesen, Olga and Claes, Leander}, year={2024} }","short":"K. Koch, O. Friesen, L. Claes, Randomised Material Parameter Impedance Dataset of Piezoelectric Rings, Zenodo, 2024.","mla":"Koch, Kevin, et al. <i>Randomised Material Parameter Impedance Dataset of Piezoelectric Rings</i>. Zenodo, 2024, doi:<a href=\"https://doi.org/10.5281/zenodo.13143680\">10.5281/zenodo.13143680</a>.","apa":"Koch, K., Friesen, O., &#38; Claes, L. (2024). <i>Randomised material parameter impedance dataset of piezoelectric rings</i>. Zenodo. <a href=\"https://doi.org/10.5281/zenodo.13143680\">https://doi.org/10.5281/zenodo.13143680</a>"},"publisher":"Zenodo","date_updated":"2026-01-05T07:57:46Z","date_created":"2024-07-31T14:10:12Z","author":[{"first_name":"Kevin","full_name":"Koch, Kevin","last_name":"Koch"},{"first_name":"Olga","last_name":"Friesen","id":"44026","full_name":"Friesen, Olga"},{"first_name":"Leander","id":"11829","full_name":"Claes, Leander","orcid":"0000-0002-4393-268X","last_name":"Claes"}],"title":"Randomised material parameter impedance dataset of piezoelectric rings","doi":"10.5281/zenodo.13143680","type":"research_data","status":"public","_id":"55470","project":[{"name":"ChaMP: Ein modellbasiertes Messverfahren zur Charakterisierung der frequenzabhängigen Materialeigenschaften von Piezokeramiken unter Verwendung eines einzelnen Probekörperindividuums","_id":"90"},{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"},{"name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)","_id":"245"}],"department":[{"_id":"49"}],"user_id":"11829"},{"status":"public","type":"research_data","_id":"53662","project":[{"_id":"90","name":"ChaMP: Ein modellbasiertes Messverfahren zur Charakterisierung der frequenzabhängigen Materialeigenschaften von Piezokeramiken unter Verwendung eines einzelnen Probekörperindividuums"},{"name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"},{"name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)","_id":"245"}],"department":[{"_id":"49"}],"user_id":"11829","year":"2024","citation":{"bibtex":"@book{Koch_Claes_2024, title={Randomised material parameter piezoelectric impedance dataset with structured electrodes}, DOI={<a href=\"https://doi.org/10.5281/ZENODO.11064206\">10.5281/ZENODO.11064206</a>}, publisher={zenodo}, author={Koch, Kevin and Claes, Leander}, year={2024} }","short":"K. Koch, L. Claes, Randomised Material Parameter Piezoelectric Impedance Dataset with Structured Electrodes, zenodo, 2024.","mla":"Koch, Kevin, and Leander Claes. <i>Randomised Material Parameter Piezoelectric Impedance Dataset with Structured Electrodes</i>. zenodo, 2024, doi:<a href=\"https://doi.org/10.5281/ZENODO.11064206\">10.5281/ZENODO.11064206</a>.","apa":"Koch, K., &#38; Claes, L. (2024). <i>Randomised material parameter piezoelectric impedance dataset with structured electrodes</i>. zenodo. <a href=\"https://doi.org/10.5281/ZENODO.11064206\">https://doi.org/10.5281/ZENODO.11064206</a>","chicago":"Koch, Kevin, and Leander Claes. <i>Randomised Material Parameter Piezoelectric Impedance Dataset with Structured Electrodes</i>. zenodo, 2024. <a href=\"https://doi.org/10.5281/ZENODO.11064206\">https://doi.org/10.5281/ZENODO.11064206</a>.","ieee":"K. Koch and L. Claes, <i>Randomised material parameter piezoelectric impedance dataset with structured electrodes</i>. zenodo, 2024.","ama":"Koch K, Claes L. <i>Randomised Material Parameter Piezoelectric Impedance Dataset with Structured Electrodes</i>. zenodo; 2024. doi:<a href=\"https://doi.org/10.5281/ZENODO.11064206\">10.5281/ZENODO.11064206</a>"},"title":"Randomised material parameter piezoelectric impedance dataset with structured electrodes","doi":"10.5281/ZENODO.11064206","publisher":"zenodo","date_updated":"2026-01-05T07:56:58Z","author":[{"full_name":"Koch, Kevin","last_name":"Koch","first_name":"Kevin"},{"first_name":"Leander","last_name":"Claes","orcid":"0000-0002-4393-268X","id":"11829","full_name":"Claes, Leander"}],"date_created":"2024-04-25T13:54:49Z"},{"status":"public","type":"misc","language":[{"iso":"eng"}],"department":[{"_id":"49"}],"user_id":"11829","_id":"55416","project":[{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"},{"_id":"245","name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)"}],"citation":{"apa":"Claes, L., Koch, K., Friesen, O., &#38; Meihost, L. (2024). <i>Machine learning in inverse measurement problems: An application to piezoelectric material characterisation</i>.","mla":"Claes, Leander, et al. <i>Machine Learning in Inverse Measurement Problems: An Application to Piezoelectric Material Characterisation</i>. 2024.","short":"L. Claes, K. Koch, O. Friesen, L. Meihost, Machine Learning in Inverse Measurement Problems: An Application to Piezoelectric Material Characterisation, International Workshop on Piezoelectric Materials and Applications (IWPMA), 2024.","bibtex":"@book{Claes_Koch_Friesen_Meihost_2024, place={International Workshop on Piezoelectric Materials and Applications (IWPMA)}, title={Machine learning in inverse measurement problems: An application to piezoelectric material characterisation}, author={Claes, Leander and Koch, Kevin and Friesen, Olga and Meihost, Lars}, year={2024} }","ama":"Claes L, Koch K, Friesen O, Meihost L. <i>Machine Learning in Inverse Measurement Problems: An Application to Piezoelectric Material Characterisation</i>.; 2024.","chicago":"Claes, Leander, Kevin Koch, Olga Friesen, and Lars Meihost. <i>Machine Learning in Inverse Measurement Problems: An Application to Piezoelectric Material Characterisation</i>. International Workshop on Piezoelectric Materials and Applications (IWPMA), 2024.","ieee":"L. Claes, K. Koch, O. Friesen, and L. Meihost, <i>Machine learning in inverse measurement problems: An application to piezoelectric material characterisation</i>. International Workshop on Piezoelectric Materials and Applications (IWPMA), 2024."},"year":"2024","place":"International Workshop on Piezoelectric Materials and Applications (IWPMA)","title":"Machine learning in inverse measurement problems: An application to piezoelectric material characterisation","author":[{"first_name":"Leander","full_name":"Claes, Leander","id":"11829","last_name":"Claes","orcid":"0000-0002-4393-268X"},{"full_name":"Koch, Kevin","last_name":"Koch","first_name":"Kevin"},{"first_name":"Olga","last_name":"Friesen","full_name":"Friesen, Olga","id":"44026"},{"first_name":"Lars","last_name":"Meihost","full_name":"Meihost, Lars","id":"24769"}],"date_created":"2024-07-29T12:34:21Z","date_updated":"2026-01-05T07:57:27Z"},{"publication_identifier":{"issn":["2196-7113"]},"publication_status":"published","citation":{"mla":"Friesen, Olga, et al. “Estimation of Piezoelectric Material Parameters of Ring-Shaped Specimens.” <i>Tm - Technisches Messen</i>, De Gruyter, 2024, doi:<a href=\"https://doi.org/10.1515/teme-2024-0107\">https://doi.org/10.1515/teme-2024-0107</a>.","short":"O. Friesen, L. Claes, N. Feldmann, B. Henning, Tm - Technisches Messen (2024).","bibtex":"@article{Friesen_Claes_Feldmann_Henning_2024, title={Estimation of piezoelectric material parameters of ring-shaped specimens}, DOI={<a href=\"https://doi.org/10.1515/teme-2024-0107\">https://doi.org/10.1515/teme-2024-0107</a>}, journal={tm - Technisches Messen}, publisher={De Gruyter}, author={Friesen, Olga and Claes, Leander and Feldmann, Nadine and Henning, Bernd}, year={2024} }","apa":"Friesen, O., Claes, L., Feldmann, N., &#38; Henning, B. (2024). Estimation of piezoelectric material parameters of ring-shaped specimens. <i>Tm - Technisches Messen</i>. <a href=\"https://doi.org/10.1515/teme-2024-0107\">https://doi.org/10.1515/teme-2024-0107</a>","ama":"Friesen O, Claes L, Feldmann N, Henning B. Estimation of piezoelectric material parameters of ring-shaped specimens. <i>tm - Technisches Messen</i>. Published online 2024. doi:<a href=\"https://doi.org/10.1515/teme-2024-0107\">https://doi.org/10.1515/teme-2024-0107</a>","chicago":"Friesen, Olga, Leander Claes, Nadine Feldmann, and Bernd Henning. “Estimation of Piezoelectric Material Parameters of Ring-Shaped Specimens.” <i>Tm - Technisches Messen</i>, 2024. <a href=\"https://doi.org/10.1515/teme-2024-0107\">https://doi.org/10.1515/teme-2024-0107</a>.","ieee":"O. Friesen, L. Claes, N. Feldmann, and B. Henning, “Estimation of piezoelectric material parameters of ring-shaped specimens,” <i>tm - Technisches Messen</i>, 2024, doi: <a href=\"https://doi.org/10.1515/teme-2024-0107\">https://doi.org/10.1515/teme-2024-0107</a>."},"year":"2024","author":[{"id":"44026","full_name":"Friesen, Olga","last_name":"Friesen","first_name":"Olga"},{"first_name":"Leander","orcid":"0000-0002-4393-268X","last_name":"Claes","id":"11829","full_name":"Claes, Leander"},{"first_name":"Nadine","id":"23082","full_name":"Feldmann, Nadine","last_name":"Feldmann"},{"first_name":"Bernd","full_name":"Henning, Bernd","id":"213","last_name":"Henning"}],"date_created":"2024-10-29T09:07:00Z","publisher":"De Gruyter","date_updated":"2026-01-05T07:59:24Z","doi":"https://doi.org/10.1515/teme-2024-0107","title":"Estimation of piezoelectric material parameters of ring-shaped specimens","publication":"tm - Technisches Messen","type":"journal_article","status":"public","abstract":[{"text":"The estimation of accurate piezoelectric material parameters is a fundamental prerequisite for simulation-driven design of piezoelectric actuators and sensors. Previous studies show that a full set of material parameters can be determined in an inverse procedure using a single disc-shaped specimen with an electrode structured for increased sensitivity with respect to all material parameters. However, in the case of high-power actuator applications, ring-shaped piezoelectric components are often employed, necessitating an adaptation of the previously developed method. The alteration in geometry introduces some advantages. Accordingly, there is no longer any requirement to modify the electrode structure in order to enhance sensitivity. The method to estimate the material parameters presented here consists of a total of three stages. An initial, approximate estimation of the material parameters is determined using analytical approximations for the resonance frequencies from the IEEE standard. These values are optimised in an inverse procedure that employs analytic expressions for the electrical impedance of piezoelectric rings as the forward model. Further refinement is achieved by using Finite Element (FE) simulations as the forward model again in an inverse procedure. The method is applied to electrical impedance measurement data, yielding material parameters for hard piezoelectric rings. The result shows a good agreement between the simulation and measurement results, indicating realistic material parameter values.","lang":"eng"}],"department":[{"_id":"49"}],"user_id":"11829","_id":"56777","project":[{"_id":"245","name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)"}],"language":[{"iso":"eng"}]},{"main_file_link":[{"url":"https://www.degruyter.com/document/doi/10.1515/teme-2024-0099/html"}],"doi":"10.1515/teme-2024-0099","title":"Neuronale Netze zur Startwertschätzung bei der Identifikation piezoelektrischer Materialparameter","date_created":"2024-05-17T08:26:55Z","author":[{"last_name":"Koch","full_name":"Koch, Kevin","first_name":"Kevin"},{"first_name":"Leander","last_name":"Claes","orcid":"0000-0002-4393-268X","full_name":"Claes, Leander","id":"11829"},{"first_name":"Benjamin","full_name":"Jurgelucks, Benjamin","last_name":"Jurgelucks"},{"first_name":"Lars","full_name":"Meihost, Lars","id":"24769","last_name":"Meihost"}],"publisher":"Walter de Gruyter GmbH","date_updated":"2026-01-05T07:59:09Z","citation":{"apa":"Koch, K., Claes, L., Jurgelucks, B., &#38; Meihost, L. (2024). Neuronale Netze zur Startwertschätzung bei der Identifikation piezoelektrischer Materialparameter. <i>Tm - Technisches Messen</i>. <a href=\"https://doi.org/10.1515/teme-2024-0099\">https://doi.org/10.1515/teme-2024-0099</a>","bibtex":"@article{Koch_Claes_Jurgelucks_Meihost_2024, title={Neuronale Netze zur Startwertschätzung bei der Identifikation piezoelektrischer Materialparameter}, DOI={<a href=\"https://doi.org/10.1515/teme-2024-0099\">10.1515/teme-2024-0099</a>}, journal={tm - Technisches Messen}, publisher={Walter de Gruyter GmbH}, author={Koch, Kevin and Claes, Leander and Jurgelucks, Benjamin and Meihost, Lars}, year={2024} }","short":"K. Koch, L. Claes, B. Jurgelucks, L. Meihost, Tm - Technisches Messen (2024).","mla":"Koch, Kevin, et al. “Neuronale Netze Zur Startwertschätzung Bei Der Identifikation Piezoelektrischer Materialparameter.” <i>Tm - Technisches Messen</i>, Walter de Gruyter GmbH, 2024, doi:<a href=\"https://doi.org/10.1515/teme-2024-0099\">10.1515/teme-2024-0099</a>.","ieee":"K. Koch, L. Claes, B. Jurgelucks, and L. Meihost, “Neuronale Netze zur Startwertschätzung bei der Identifikation piezoelektrischer Materialparameter,” <i>tm - Technisches Messen</i>, 2024, doi: <a href=\"https://doi.org/10.1515/teme-2024-0099\">10.1515/teme-2024-0099</a>.","chicago":"Koch, Kevin, Leander Claes, Benjamin Jurgelucks, and Lars Meihost. “Neuronale Netze Zur Startwertschätzung Bei Der Identifikation Piezoelektrischer Materialparameter.” <i>Tm - Technisches Messen</i>, 2024. <a href=\"https://doi.org/10.1515/teme-2024-0099\">https://doi.org/10.1515/teme-2024-0099</a>.","ama":"Koch K, Claes L, Jurgelucks B, Meihost L. Neuronale Netze zur Startwertschätzung bei der Identifikation piezoelektrischer Materialparameter. <i>tm - Technisches Messen</i>. Published online 2024. doi:<a href=\"https://doi.org/10.1515/teme-2024-0099\">10.1515/teme-2024-0099</a>"},"year":"2024","quality_controlled":"1","alternative_title":["Neural networks for initial value estimation in the identification of piezoelectric material parameters"],"language":[{"iso":"eng"}],"article_type":"original","user_id":"11829","department":[{"_id":"49"}],"project":[{"name":"ChaMP: Ein modellbasiertes Messverfahren zur Charakterisierung der frequenzabhängigen Materialeigenschaften von Piezokeramiken unter Verwendung eines einzelnen Probekörperindividuums","_id":"90"},{"name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"},{"name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)","_id":"245"}],"_id":"54314","status":"public","type":"journal_article","publication":"tm - Technisches Messen"},{"user_id":"11829","department":[{"_id":"90"}],"project":[{"_id":"245","name":"FOR 5208: Modellbasierte Bestimmung nichtlinearer Eigenschaften von Piezokeramiken für Leistungsschallanwendungen (NEPTUN)"}],"_id":"57820","language":[{"iso":"eng"}],"article_number":"113600","type":"journal_article","publication":"Nonlinear Analysis","status":"public","author":[{"first_name":"Vanja","last_name":"Nikolić","full_name":"Nikolić, Vanja"},{"first_name":"Michael","full_name":"Winkler, Michael","id":"31496","last_name":"Winkler"}],"date_created":"2024-12-18T07:13:19Z","volume":247,"date_updated":"2026-01-05T08:02:36Z","publisher":"Elsevier BV","doi":"10.1016/j.na.2024.113600","title":"L∞ blow-up in the Jordan-Moore-Gibson-Thompson equation","publication_status":"published","publication_identifier":{"issn":["0362-546X"]},"citation":{"ama":"Nikolić V, Winkler M. L∞ blow-up in the Jordan-Moore-Gibson-Thompson equation. <i>Nonlinear Analysis</i>. 2024;247. doi:<a href=\"https://doi.org/10.1016/j.na.2024.113600\">10.1016/j.na.2024.113600</a>","ieee":"V. Nikolić and M. Winkler, “L∞ blow-up in the Jordan-Moore-Gibson-Thompson equation,” <i>Nonlinear Analysis</i>, vol. 247, Art. no. 113600, 2024, doi: <a href=\"https://doi.org/10.1016/j.na.2024.113600\">10.1016/j.na.2024.113600</a>.","chicago":"Nikolić, Vanja, and Michael Winkler. “L∞ Blow-up in the Jordan-Moore-Gibson-Thompson Equation.” <i>Nonlinear Analysis</i> 247 (2024). <a href=\"https://doi.org/10.1016/j.na.2024.113600\">https://doi.org/10.1016/j.na.2024.113600</a>.","apa":"Nikolić, V., &#38; Winkler, M. (2024). L∞ blow-up in the Jordan-Moore-Gibson-Thompson equation. <i>Nonlinear Analysis</i>, <i>247</i>, Article 113600. <a href=\"https://doi.org/10.1016/j.na.2024.113600\">https://doi.org/10.1016/j.na.2024.113600</a>","bibtex":"@article{Nikolić_Winkler_2024, title={L∞ blow-up in the Jordan-Moore-Gibson-Thompson equation}, volume={247}, DOI={<a href=\"https://doi.org/10.1016/j.na.2024.113600\">10.1016/j.na.2024.113600</a>}, number={113600}, journal={Nonlinear Analysis}, publisher={Elsevier BV}, author={Nikolić, Vanja and Winkler, Michael}, year={2024} }","short":"V. Nikolić, M. Winkler, Nonlinear Analysis 247 (2024).","mla":"Nikolić, Vanja, and Michael Winkler. “L∞ Blow-up in the Jordan-Moore-Gibson-Thompson Equation.” <i>Nonlinear Analysis</i>, vol. 247, 113600, Elsevier BV, 2024, doi:<a href=\"https://doi.org/10.1016/j.na.2024.113600\">10.1016/j.na.2024.113600</a>."},"intvolume":"       247","year":"2024"},{"citation":{"apa":"Gburrek, T., Meise, A. T., Schmalenstroeer, J., &#38; Haeb-Umbach, R. (2024). Diminishing Domain Mismatch for DNN-Based Acoustic Distance Estimation via Stochastic Room Reverberation Models. <i>2024 18th International Workshop on Acoustic Signal Enhancement (IWAENC)</i>. <a href=\"https://doi.org/10.1109/iwaenc61483.2024.10694103\">https://doi.org/10.1109/iwaenc61483.2024.10694103</a>","short":"T. Gburrek, A.T. Meise, J. Schmalenstroeer, R. Haeb-Umbach, in: 2024 18th International Workshop on Acoustic Signal Enhancement (IWAENC), IEEE, 2024.","mla":"Gburrek, Tobias, et al. “Diminishing Domain Mismatch for DNN-Based Acoustic Distance Estimation via Stochastic Room Reverberation Models.” <i>2024 18th International Workshop on Acoustic Signal Enhancement (IWAENC)</i>, IEEE, 2024, doi:<a href=\"https://doi.org/10.1109/iwaenc61483.2024.10694103\">10.1109/iwaenc61483.2024.10694103</a>.","bibtex":"@inproceedings{Gburrek_Meise_Schmalenstroeer_Haeb-Umbach_2024, title={Diminishing Domain Mismatch for DNN-Based Acoustic Distance Estimation via Stochastic Room Reverberation Models}, DOI={<a href=\"https://doi.org/10.1109/iwaenc61483.2024.10694103\">10.1109/iwaenc61483.2024.10694103</a>}, booktitle={2024 18th International Workshop on Acoustic Signal Enhancement (IWAENC)}, publisher={IEEE}, author={Gburrek, Tobias and Meise, Adrian Tobias and Schmalenstroeer, Joerg and Haeb-Umbach, Reinhold}, year={2024} }","ama":"Gburrek T, Meise AT, Schmalenstroeer J, Haeb-Umbach R. Diminishing Domain Mismatch for DNN-Based Acoustic Distance Estimation via Stochastic Room Reverberation Models. In: <i>2024 18th International Workshop on Acoustic Signal Enhancement (IWAENC)</i>. IEEE; 2024. doi:<a href=\"https://doi.org/10.1109/iwaenc61483.2024.10694103\">10.1109/iwaenc61483.2024.10694103</a>","chicago":"Gburrek, Tobias, Adrian Tobias Meise, Joerg Schmalenstroeer, and Reinhold Haeb-Umbach. “Diminishing Domain Mismatch for DNN-Based Acoustic Distance Estimation via Stochastic Room Reverberation Models.” In <i>2024 18th International Workshop on Acoustic Signal Enhancement (IWAENC)</i>. IEEE, 2024. <a href=\"https://doi.org/10.1109/iwaenc61483.2024.10694103\">https://doi.org/10.1109/iwaenc61483.2024.10694103</a>.","ieee":"T. Gburrek, A. T. Meise, J. Schmalenstroeer, and R. Haeb-Umbach, “Diminishing Domain Mismatch for DNN-Based Acoustic Distance Estimation via Stochastic Room Reverberation Models,” 2024, doi: <a href=\"https://doi.org/10.1109/iwaenc61483.2024.10694103\">10.1109/iwaenc61483.2024.10694103</a>."},"year":"2024","has_accepted_license":"1","quality_controlled":"1","publication_status":"published","doi":"10.1109/iwaenc61483.2024.10694103","title":"Diminishing Domain Mismatch for DNN-Based Acoustic Distance Estimation via Stochastic Room Reverberation Models","date_created":"2024-11-13T08:39:57Z","author":[{"full_name":"Gburrek, Tobias","id":"44006","last_name":"Gburrek","first_name":"Tobias"},{"last_name":"Meise","full_name":"Meise, Adrian Tobias","id":"79268","first_name":"Adrian Tobias"},{"last_name":"Schmalenstroeer","full_name":"Schmalenstroeer, Joerg","id":"460","first_name":"Joerg"},{"first_name":"Reinhold","id":"242","full_name":"Haeb-Umbach, Reinhold","last_name":"Haeb-Umbach"}],"date_updated":"2026-01-05T16:28:23Z","oa":"1","publisher":"IEEE","status":"public","file":[{"date_created":"2024-11-13T08:42:13Z","creator":"tgburrek","date_updated":"2024-11-13T08:42:13Z","access_level":"open_access","file_id":"57033","file_name":"dist_est_iwaenc24_gburrek.pdf","file_size":300589,"content_type":"application/pdf","relation":"main_file"}],"publication":"2024 18th International Workshop on Acoustic Signal Enhancement (IWAENC)","type":"conference","file_date_updated":"2024-11-13T08:42:13Z","language":[{"iso":"eng"}],"ddc":["006"],"department":[{"_id":"54"}],"user_id":"44006","_id":"57031"},{"year":"2024","citation":{"ama":"Berger T, Dennstädt D, Lanza L, Worthmann K. Robust Funnel Model Predictive Control for Output Tracking with Prescribed Performance. <i>SIAM Journal on Control and Optimization</i>. Published online 2024.","chicago":"Berger, Thomas, Dario Dennstädt, L.  Lanza, and K.  Worthmann. “Robust Funnel Model Predictive Control for Output Tracking with Prescribed Performance.” <i>SIAM Journal on Control and Optimization</i>, 2024.","ieee":"T. Berger, D. Dennstädt, L. Lanza, and K. Worthmann, “Robust Funnel Model Predictive Control for Output Tracking with Prescribed Performance,” <i>SIAM Journal on Control and Optimization</i>, 2024.","apa":"Berger, T., Dennstädt, D., Lanza, L., &#38; Worthmann, K. (2024). Robust Funnel Model Predictive Control for Output Tracking with Prescribed Performance. <i>SIAM Journal on Control and Optimization</i>.","bibtex":"@article{Berger_Dennstädt_Lanza_Worthmann_2024, title={Robust Funnel Model Predictive Control for Output Tracking with Prescribed Performance}, journal={SIAM Journal on Control and Optimization}, author={Berger, Thomas and Dennstädt, Dario and Lanza, L.  and Worthmann, K. }, year={2024} }","short":"T. Berger, D. Dennstädt, L. Lanza, K. Worthmann, SIAM Journal on Control and Optimization (2024).","mla":"Berger, Thomas, et al. “Robust Funnel Model Predictive Control for Output Tracking with Prescribed Performance.” <i>SIAM Journal on Control and Optimization</i>, 2024."},"status":"public","type":"journal_article","publication":"SIAM Journal on Control and Optimization","title":"Robust Funnel Model Predictive Control for Output Tracking with Prescribed Performance","language":[{"iso":"eng"}],"date_updated":"2026-01-05T20:52:17Z","_id":"53146","date_created":"2024-04-03T10:08:01Z","user_id":"77457","author":[{"full_name":"Berger, Thomas","id":"77457","last_name":"Berger","first_name":"Thomas"},{"id":"98033","full_name":"Dennstädt, Dario","last_name":"Dennstädt","first_name":"Dario"},{"full_name":"Lanza, L. ","last_name":"Lanza","first_name":"L. "},{"first_name":"K. ","full_name":"Worthmann, K. ","last_name":"Worthmann"}],"department":[{"_id":"618"}]},{"title":"Funnel MPC for nonlinear systems with arbitrary relative degree","language":[{"iso":"eng"}],"date_updated":"2026-01-05T20:52:14Z","_id":"53151","author":[{"first_name":"Thomas","last_name":"Berger","id":"77457","full_name":"Berger, Thomas"},{"last_name":"Dennstädt","id":"98033","full_name":"Dennstädt, Dario","first_name":"Dario"}],"user_id":"77457","date_created":"2024-04-03T10:10:33Z","year":"2024","citation":{"apa":"Berger, T., &#38; Dennstädt, D. (2024). Funnel MPC for nonlinear systems with arbitrary relative degree. <i>Automatica</i>.","short":"T. Berger, D. Dennstädt, Automatica (2024).","bibtex":"@article{Berger_Dennstädt_2024, title={Funnel MPC for nonlinear systems with arbitrary relative degree}, journal={Automatica}, author={Berger, Thomas and Dennstädt, Dario}, year={2024} }","mla":"Berger, Thomas, and Dario Dennstädt. “Funnel MPC for Nonlinear Systems with Arbitrary Relative Degree.” <i>Automatica</i>, 2024.","ieee":"T. Berger and D. Dennstädt, “Funnel MPC for nonlinear systems with arbitrary relative degree,” <i>Automatica</i>, 2024.","chicago":"Berger, Thomas, and Dario Dennstädt. “Funnel MPC for Nonlinear Systems with Arbitrary Relative Degree.” <i>Automatica</i>, 2024.","ama":"Berger T, Dennstädt D. Funnel MPC for nonlinear systems with arbitrary relative degree. <i>Automatica</i>. Published online 2024."},"status":"public","type":"journal_article","publication":"Automatica"},{"publication_status":"published","publication_identifier":{"issn":["0967-0661"]},"citation":{"ama":"Oppeneiger B, Lanza L, Schell M, et al. Model predictive control of a magnetic levitation system with prescribed output tracking performance. <i>Control Engineering Practice</i>. 2024;151. doi:<a href=\"https://doi.org/10.1016/j.conengprac.2024.106018\">10.1016/j.conengprac.2024.106018</a>","chicago":"Oppeneiger, Benedikt, Lukas Lanza, Maximilian Schell, Dario Dennstädt, Manuel Schaller, Bert Zamzow, Thomas Berger, and Karl Worthmann. “Model Predictive Control of a Magnetic Levitation System with Prescribed Output Tracking Performance.” <i>Control Engineering Practice</i> 151 (2024). <a href=\"https://doi.org/10.1016/j.conengprac.2024.106018\">https://doi.org/10.1016/j.conengprac.2024.106018</a>.","ieee":"B. Oppeneiger <i>et al.</i>, “Model predictive control of a magnetic levitation system with prescribed output tracking performance,” <i>Control Engineering Practice</i>, vol. 151, Art. no. 106018, 2024, doi: <a href=\"https://doi.org/10.1016/j.conengprac.2024.106018\">10.1016/j.conengprac.2024.106018</a>.","apa":"Oppeneiger, B., Lanza, L., Schell, M., Dennstädt, D., Schaller, M., Zamzow, B., Berger, T., &#38; Worthmann, K. (2024). Model predictive control of a magnetic levitation system with prescribed output tracking performance. <i>Control Engineering Practice</i>, <i>151</i>, Article 106018. <a href=\"https://doi.org/10.1016/j.conengprac.2024.106018\">https://doi.org/10.1016/j.conengprac.2024.106018</a>","short":"B. Oppeneiger, L. Lanza, M. Schell, D. Dennstädt, M. Schaller, B. Zamzow, T. Berger, K. Worthmann, Control Engineering Practice 151 (2024).","bibtex":"@article{Oppeneiger_Lanza_Schell_Dennstädt_Schaller_Zamzow_Berger_Worthmann_2024, title={Model predictive control of a magnetic levitation system with prescribed output tracking performance}, volume={151}, DOI={<a href=\"https://doi.org/10.1016/j.conengprac.2024.106018\">10.1016/j.conengprac.2024.106018</a>}, number={106018}, journal={Control Engineering Practice}, publisher={Elsevier BV}, author={Oppeneiger, Benedikt and Lanza, Lukas and Schell, Maximilian and Dennstädt, Dario and Schaller, Manuel and Zamzow, Bert and Berger, Thomas and Worthmann, Karl}, year={2024} }","mla":"Oppeneiger, Benedikt, et al. “Model Predictive Control of a Magnetic Levitation System with Prescribed Output Tracking Performance.” <i>Control Engineering Practice</i>, vol. 151, 106018, Elsevier BV, 2024, doi:<a href=\"https://doi.org/10.1016/j.conengprac.2024.106018\">10.1016/j.conengprac.2024.106018</a>."},"intvolume":"       151","year":"2024","author":[{"first_name":"Benedikt","last_name":"Oppeneiger","full_name":"Oppeneiger, Benedikt"},{"first_name":"Lukas","last_name":"Lanza","full_name":"Lanza, Lukas"},{"last_name":"Schell","full_name":"Schell, Maximilian","first_name":"Maximilian"},{"full_name":"Dennstädt, Dario","id":"98033","last_name":"Dennstädt","first_name":"Dario"},{"full_name":"Schaller, Manuel","last_name":"Schaller","first_name":"Manuel"},{"last_name":"Zamzow","full_name":"Zamzow, Bert","first_name":"Bert"},{"first_name":"Thomas","last_name":"Berger","full_name":"Berger, Thomas"},{"full_name":"Worthmann, Karl","last_name":"Worthmann","first_name":"Karl"}],"date_created":"2026-01-05T20:49:50Z","volume":151,"publisher":"Elsevier BV","date_updated":"2026-01-05T20:58:18Z","doi":"10.1016/j.conengprac.2024.106018","title":"Model predictive control of a magnetic levitation system with prescribed output tracking performance","type":"journal_article","publication":"Control Engineering Practice","status":"public","user_id":"98033","_id":"63472","language":[{"iso":"eng"}],"article_number":"106018"},{"volume":192,"author":[{"first_name":"Lukas","last_name":"Lanza","full_name":"Lanza, Lukas"},{"first_name":"Dario","last_name":"Dennstädt","id":"98033","full_name":"Dennstädt, Dario"},{"last_name":"Worthmann","full_name":"Worthmann, Karl","first_name":"Karl"},{"full_name":"Schmitz, Philipp","last_name":"Schmitz","first_name":"Philipp"},{"first_name":"Gökçen Devlet","full_name":"Şen, Gökçen Devlet","last_name":"Şen"},{"full_name":"Trenn, Stephan","last_name":"Trenn","first_name":"Stephan"},{"last_name":"Schaller","full_name":"Schaller, Manuel","first_name":"Manuel"}],"date_created":"2026-01-05T20:50:03Z","publisher":"Elsevier BV","date_updated":"2026-01-05T20:57:40Z","doi":"10.1016/j.sysconle.2024.105892","title":"Sampled-data funnel control and its use for safe continual learning","publication_identifier":{"issn":["0167-6911"]},"publication_status":"published","intvolume":"       192","citation":{"apa":"Lanza, L., Dennstädt, D., Worthmann, K., Schmitz, P., Şen, G. D., Trenn, S., &#38; Schaller, M. (2024). Sampled-data funnel control and its use for safe continual learning. <i>Systems &#38;amp; Control Letters</i>, <i>192</i>, Article 105892. <a href=\"https://doi.org/10.1016/j.sysconle.2024.105892\">https://doi.org/10.1016/j.sysconle.2024.105892</a>","mla":"Lanza, Lukas, et al. “Sampled-Data Funnel Control and Its Use for Safe Continual Learning.” <i>Systems &#38;amp; Control Letters</i>, vol. 192, 105892, Elsevier BV, 2024, doi:<a href=\"https://doi.org/10.1016/j.sysconle.2024.105892\">10.1016/j.sysconle.2024.105892</a>.","short":"L. Lanza, D. Dennstädt, K. Worthmann, P. Schmitz, G.D. Şen, S. Trenn, M. Schaller, Systems &#38;amp; Control Letters 192 (2024).","bibtex":"@article{Lanza_Dennstädt_Worthmann_Schmitz_Şen_Trenn_Schaller_2024, title={Sampled-data funnel control and its use for safe continual learning}, volume={192}, DOI={<a href=\"https://doi.org/10.1016/j.sysconle.2024.105892\">10.1016/j.sysconle.2024.105892</a>}, number={105892}, journal={Systems &#38;amp; Control Letters}, publisher={Elsevier BV}, author={Lanza, Lukas and Dennstädt, Dario and Worthmann, Karl and Schmitz, Philipp and Şen, Gökçen Devlet and Trenn, Stephan and Schaller, Manuel}, year={2024} }","ama":"Lanza L, Dennstädt D, Worthmann K, et al. Sampled-data funnel control and its use for safe continual learning. <i>Systems &#38;amp; Control Letters</i>. 2024;192. doi:<a href=\"https://doi.org/10.1016/j.sysconle.2024.105892\">10.1016/j.sysconle.2024.105892</a>","chicago":"Lanza, Lukas, Dario Dennstädt, Karl Worthmann, Philipp Schmitz, Gökçen Devlet Şen, Stephan Trenn, and Manuel Schaller. “Sampled-Data Funnel Control and Its Use for Safe Continual Learning.” <i>Systems &#38;amp; Control Letters</i> 192 (2024). <a href=\"https://doi.org/10.1016/j.sysconle.2024.105892\">https://doi.org/10.1016/j.sysconle.2024.105892</a>.","ieee":"L. Lanza <i>et al.</i>, “Sampled-data funnel control and its use for safe continual learning,” <i>Systems &#38;amp; Control Letters</i>, vol. 192, Art. no. 105892, 2024, doi: <a href=\"https://doi.org/10.1016/j.sysconle.2024.105892\">10.1016/j.sysconle.2024.105892</a>."},"year":"2024","user_id":"98033","_id":"63473","language":[{"iso":"eng"}],"article_number":"105892","publication":"Systems &amp; Control Letters","type":"journal_article","status":"public"},{"doi":"10.23919/ecc64448.2024.10590848","title":"On Model Predictive Control with Sampled-Data Input for Output Tracking with Prescribed Performance","date_created":"2026-01-05T20:49:26Z","author":[{"first_name":"Dario","id":"98033","full_name":"Dennstädt, Dario","last_name":"Dennstädt"},{"last_name":"Lanza","full_name":"Lanza, Lukas","first_name":"Lukas"},{"full_name":"Worthmann, Karl","last_name":"Worthmann","first_name":"Karl"}],"date_updated":"2026-01-05T20:59:59Z","publisher":"IEEE","citation":{"apa":"Dennstädt, D., Lanza, L., &#38; Worthmann, K. 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