@article{27803,
  author       = {{Schwingshackl, Lukas and Neuenschwander, Manuela and Hoffmann, Georg and Buyken, Anette and Schlesinger, Sabrina}},
  issn         = {{0002-9165}},
  journal      = {{The American Journal of Clinical Nutrition}},
  pages        = {{917--918}},
  title        = {{{Reply to Khan et al.}}},
  doi          = {{10.1093/ajcn/nqaa006}},
  year         = {{2020}},
}

@article{27806,
  abstract     = {{<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>}},
  author       = {{Perrar, Ines and Gray, Nicola and Kuhnle, Gunter G. and Remer, Thomas and Buyken, Anette and Alexy, Ute}},
  issn         = {{0007-1145}},
  journal      = {{British Journal of Nutrition}},
  pages        = {{164--172}},
  title        = {{{Sugar intake among German adolescents: trends from 1990 to 2016 based on biomarker excretion in 24-h urine samples}}},
  doi          = {{10.1017/s0007114520000665}},
  year         = {{2020}},
}

@article{27807,
  abstract     = {{<jats:p>There is no question that elevated postprandial glycemia is a significant driver of common chronic diseases globally [...]</jats:p>}},
  author       = {{Brand-Miller, Jennie and Buyken, Anette}},
  issn         = {{2072-6643}},
  journal      = {{Nutrients}},
  title        = {{{The Relationship between Glycemic Index and Health}}},
  doi          = {{10.3390/nu12020536}},
  year         = {{2020}},
}

@proceedings{21019,
  editor       = {{Ahrendt, Wolfgang and Wehrheim, Heike}},
  isbn         = {{978-3-030-50994-1}},
  publisher    = {{Springer}},
  title        = {{{Tests and Proofs - 14th International Conference, TAP@STAF 2020, Bergen, Norway, June 22-23, 2020, Proceedings [postponed]}}},
  doi          = {{10.1007/978-3-030-50995-8}},
  volume       = {{12165}},
  year         = {{2020}},
}

@article{21257,
  abstract     = {{<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>
          <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>}},
  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 Hammes, Andrea and Heller, Lambert and Kailus, Angela and Kohle, Hubertus and Ludwig, Jens and Münzmay, Andreas and Pittroff, Sarah and Razum, Matthias and Röwenstrunk, Daniel and Sack, Harald and Simon, Holger and Schmidt, Dörte and Schrade, Torsten and Walzel, Annika-Valeska and Wiermann, Barbara}},
  issn         = {{2367-7163}},
  journal      = {{Research Ideas and Outcomes}},
  title        = {{{NFDI4Culture - Consortium for research data on material and immaterial cultural heritage}}},
  doi          = {{10.3897/rio.6.e57036}},
  year         = {{2020}},
}

@inproceedings{21382,
  author       = {{Japs, Segej and Kharatyan, Aschot and Tekaat, Julian and Kaiser, Lydia and Dumitrescu, Roman}},
  booktitle    = {{Proceedings of the Design Society}},
  location     = {{Cavtat}},
  title        = {{{Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation}}},
  year         = {{2020}},
}

@inproceedings{21438,
  author       = {{Japs, Segej and Kharatyan, Aschot and Kaiser, Lydia and Dumitrescu, Roman}},
  booktitle    = {{Proceedings of the 16th International Design Conference (DESIGN 2020)}},
  location     = {{Cavtat}},
  title        = {{{CONSENS 3D: Method for 3D-Environment Driven Domain Knowledge Elicitaion and System Model Generation}}},
  year         = {{2020}},
}

@inproceedings{17370,
  abstract     = {{ We consider a natural extension to the metric uncapacitated Facility Location Problem (FLP) in which requests ask for different commodities out of a finite set \( S \) of commodities.
  Ravi and Sinha (SODA 2004) introduced the model as the \emph{Multi-Commodity Facility Location Problem} (MFLP) and considered it an offline optimization problem.
  The model itself is similar to the FLP: i.e., requests are located at points of a finite metric space and the task of an algorithm is to construct facilities and assign requests to facilities while minimizing the construction cost and the sum over all assignment distances.
  In addition, requests and facilities are heterogeneous; they request or offer multiple commodities out of $S$.
  A request has to be connected to a set of facilities jointly offering the commodities demanded by it.
  In comparison to the FLP, an algorithm has to decide not only if and where to place facilities, but also which commodities to offer at each.

  To the best of our knowledge we are the first to study the problem in its online variant in which requests, their positions and their commodities are not known beforehand but revealed over time.
  We present results regarding the competitive ratio.
  On the one hand, we show that heterogeneity influences the competitive ratio by developing a lower bound on the competitive ratio for any randomized online algorithm of \( \Omega (  \sqrt{|S|} + \frac{\log n}{\log \log n}  ) \) that already holds for simple line metrics.
  Here, \( n \) is the number of requests.
  On the other side, we establish a deterministic \( \mathcal{O}(\sqrt{|S|} \cdot \log n) \)-competitive algorithm and a randomized \( \mathcal{O}(\sqrt{|S|} \cdot \frac{\log n}{\log \log n} ) \)-competitive algorithm.
  Further, we show that when considering a more special class of cost functions for the construction cost of a facility, the competitive ratio decreases given by our deterministic algorithm depending on the function.}},
  author       = {{Castenow, Jannik and Feldkord, Björn and Knollmann, Till and Malatyali, Manuel and Meyer auf der Heide, Friedhelm}},
  booktitle    = {{Proceedings of the 32nd ACM Symposium on Parallelism in Algorithms and Architectures}},
  isbn         = {{9781450369350}},
  keywords     = {{Online Multi-Commodity Facility Location, Competitive Ratio, Online Optimization, Facility Location Problem}},
  title        = {{{The Online Multi-Commodity Facility Location Problem}}},
  doi          = {{10.1145/3350755.3400281}},
  year         = {{2020}},
}

@inbook{17411,
  abstract     = {{Many dynamical systems possess symmetries, e.g. rotational and translational invariances of mechanical systems. These can be beneficially exploited in the design of numerical optimal control methods. We present a model predictive control scheme which is based on a library of precomputed motion primitives. The primitives are equivalence classes w.r.t. the symmetry of the optimal control problems. Trim primitives as relative equilibria w.r.t. this symmetry, play a crucial role in the algorithm. The approach is illustrated using an academic mobile robot example.}},
  author       = {{Flaßkamp, Kathrin and Ober-Blöbaum, Sina and Peitz, Sebastian}},
  booktitle    = {{Advances in Dynamics, Optimization and Computation}},
  editor       = {{Junge, Oliver and Schütze, Oliver and Froyland, Gary and Ober-Blöbaum, Sina and Padberg-Gehle, Kathrin}},
  isbn         = {{9783030512637}},
  issn         = {{2198-4182}},
  publisher    = {{Springer}},
  title        = {{{Symmetry in Optimal Control: A Multiobjective Model Predictive Control Approach}}},
  doi          = {{10.1007/978-3-030-51264-4_9}},
  year         = {{2020}},
}

@inbook{18789,
  author       = {{Nickchen, Tobias and Engels, Gregor and Lohn, Johannes}},
  booktitle    = {{Industrializing Additive Manufacturing}},
  isbn         = {{9783030543334}},
  title        = {{{Opportunities of 3D Machine Learning for Manufacturability Analysis and Component Recognition in the Additive Manufacturing Process Chain}}},
  doi          = {{10.1007/978-3-030-54334-1_4}},
  year         = {{2020}},
}

@article{24005,
  author       = {{Brüggemann, Jan-Peter and Risse, Lena and Woodcock, Steven Clifford and Joy, Tintu David and Neumann, Johannes and Vidner, Jakub and Kullmer, Gunter and Richard, Hans Albert}},
  issn         = {{2666-4968}},
  journal      = {{Applications in Engineering Science}},
  title        = {{{Structural optimization of a wheel force transducer component for more realistic acquisition of vehicle load data and fracture mechanical evaluation}}},
  doi          = {{10.1016/j.apples.2020.100032}},
  year         = {{2020}},
}

@inproceedings{24011,
  author       = {{Joy, Tintu David and Kullmer, Gunter and Risse, Lena}},
  location     = {{Hamburg}},
  pages        = {{207--216}},
  title        = {{{Vorhersage der Rissinitiierung in 3D-Strukturen mit ADAPCRACK3D}}},
  volume       = {{DVM-Bericht 252}},
  year         = {{2020}},
}

@article{20372,
  abstract     = {{A stepwise angular spectrum method (SASM) for curved interfaces is presented to calculate the wave propagation in planar lens-like integrated optical structures based on photonic slab waveguides. The method is derived and illustrated for an effective 2D setup first and then for 3D slab waveguide lenses. We employ slab waveguides of different thicknesses connected by curved surfaces to realize a lens-like structure. To simulate the wave propagation in 3D including reflection and scattering losses, the stepwise angular spectrum method is combined with full vectorial finite element computations for subproblems with lower complexity. Our SASM results show excellent agreement with rigorous numerical simulations of the full structures with a substantially lower computational effort and can be utilized for the simulation-based design and optimization of complex and large scale setups.}},
  author       = {{Ebers, Lena and Hammer, Manfred and Förstner, Jens}},
  issn         = {{1094-4087}},
  journal      = {{Optics Express}},
  keywords     = {{tet_topic_waveguides}},
  number       = {{24}},
  pages        = {{36361}},
  title        = {{{Light diffraction in slab waveguide lenses simulated with the stepwise angular spectrum method}}},
  doi          = {{10.1364/oe.409612}},
  volume       = {{28}},
  year         = {{2020}},
}

@inproceedings{20512,
  author       = {{Krüger, Stefan and Ali, Karim and Bodden, Eric}},
  booktitle    = {{International Symposium on Code Generation and Optimization (CGO)}},
  pages        = {{185--198}},
  title        = {{{CogniCrypt_GEN - Generating Code for the Secure Usage of Crypto APIs}}},
  year         = {{2020}},
}

@inproceedings{20854,
  author       = {{Camberg, Alan Adam and Tröster, Thomas}},
  location     = {{Seoul, South Korea}},
  title        = {{{A simplified method for the evaluation of the layer compression test using one 3D digital image correlation system and considering the material anisotropy by the equibiaxial Lankford parameter}}},
  doi          = {{10.1088/1757-899X/967/1/012077}},
  year         = {{2020}},
}

@inbook{18014,
  author       = {{El Mesaoudi-Paul, Adil and Weiß, Dimitri and Bengs, Viktor and Hüllermeier, Eyke and Tierney, Kevin}},
  booktitle    = {{Learning and Intelligent Optimization. LION 2020.}},
  isbn         = {{9783030535513}},
  issn         = {{0302-9743}},
  pages        = {{216 -- 232}},
  publisher    = {{Springer}},
  title        = {{{Pool-Based Realtime Algorithm Configuration: A Preselection Bandit Approach}}},
  doi          = {{10.1007/978-3-030-53552-0_22}},
  volume       = {{12096}},
  year         = {{2020}},
}

@inproceedings{18249,
  abstract     = {{Augmented Reality (AR) has recently found high attention in mobile shopping apps such as in domains like furniture or decoration. Here, the developers of the apps focus on the positioning of atomic 3D objects in the physical environment. With this focus, they neglect the conﬁguration of multi-faceted 3D object composition according to the user needs and environmental constraints. To tackle these challenges, we present a model-based approach to support AR-assisted product con-ﬁguration based on the concept of Dynamic Software Product Lines. Our approach splits products (e.g. table) into parts (e.g. tabletop, ta-ble legs, funnier) with their 3D objects and additional information (e.g. name, price). The possible products, which can be conﬁgured out of these parts, are stored in a feature model. At runtime, this feature model can be used to conﬁgure 3D object compositions out of the product parts and adapt to user needs and environmental constraints. The beneﬁts of this approach are demonstrated by a case study of conﬁguring modular kitchens with the help of a prototypical mobile-based implementation.}},
  author       = {{Gottschalk, Sebastian and Yigitbas, Enes and Schmidt, Eugen and Engels, Gregor}},
  booktitle    = {{Human-Centered Software Engineering. HCSE 2020}},
  editor       = {{Bernhaupt, Regina and Ardito, Carmelo and Sauer, Stefan}},
  keywords     = {{Product Configuration, Augmented Reality, Runtime Adaptation, Dynamic Software Product Lines}},
  location     = {{Eindhoven}},
  publisher    = {{Springer}},
  title        = {{{Model-based Product Configuration in Augmented Reality Applications}}},
  doi          = {{10.1007/978-3-030-64266-2_5}},
  volume       = {{12481}},
  year         = {{2020}},
}

@article{22963,
  author       = {{Biemelt, Patrick and Gausemeier, Sandra and Trächtler, Ansgar}},
  journal      = {{International Journal On Advances in Systems and Measurements}},
  number       = {{3 & 4}},
  pages        = {{203--219}},
  title        = {{{Design and Objective Evaluation of Filter- and Optimization-based Motion Cueing Strategies for a Hybrid Kinematics Driving Simulator with 5 Degrees of Freedom}}},
  volume       = {{13}},
  year         = {{2020}},
}

@inproceedings{16939,
  author       = {{Triebus, Marcel and Tröster, Thomas}},
  booktitle    = {{Proceedings 4th International Conference Hybrid Materials & Structures}},
  location     = {{Web-Conference}},
  title        = {{{A Holistic Approach to Optimization-Based Design of Hybrid Materials}}},
  year         = {{2020}},
}

@inproceedings{16968,
  abstract     = {{In this work, we initiate the research about the Gathering problem for robots
with limited viewing range in the three-dimensional Euclidean space. In the
Gathering problem, a set of initially scattered robots is required to gather at
the same position. The robots' capabilities are very restricted -- they do not
agree on any coordinate system or compass, have a limited viewing range, have
no memory of the past and cannot communicate. We study the problem in two
different time models, in FSYNC (fully synchronized discrete rounds) and the
continuous time model. For FSYNC, we introduce the 3D-Go-To-The-Center-strategy
and prove a runtime of $\Theta(n^2)$ that matches the currently best runtime
bound for the same model in the Euclidean plane [SPAA'11]. Our main result is
the generalization of contracting strategies (continuous time) from
[Algosensors'17] to three dimensions. In contracting strategies, every robot
that is located on the global convex hull of all robots' positions moves with
full speed towards the inside of the convex hull. We prove a runtime bound of
$O(\Delta \cdot n^{3/2})$ for any three-dimensional contracting strategy, where
$\Delta$ denotes the diameter of the initial configuration. This comes up to a
factor of $\sqrt{n}$ close to the lower bound of $\Omega (\Delta \cdot n)$
which is already true in two dimensions. In general, it might be hard for
robots with limited viewing range to decide whether they are located on the
global convex hull and which movement maintains the connectivity of the swarm,
rendering the design of concrete contracting strategies a challenging task. We
prove that the continuous variant of 3D-Go-To-The-Center is contracting and
keeps the swarm connected. Moreover, we give a simple design criterion for
three-dimensional contracting strategies that maintains the connectivity of the
swarm and introduce an exemplary strategy based on this criterion.}},
  author       = {{Braun, Michael and Castenow, Jannik and Meyer auf der Heide, Friedhelm}},
  booktitle    = {{Proceedings of the 27th Conference on Structural Information and Communication Complexity (SIROCCO)}},
  location     = {{Paderborn}},
  publisher    = {{Springer}},
  title        = {{{Local Gathering of Mobile Robots in Three Dimensions}}},
  doi          = {{10.1007/978-3-030-54921-3_4}},
  year         = {{2020}},
}

