@book{OPUS4-3268, title = {The history of graphic design}, editor = {M{\"u}ller, Jens and Wiedemann, Julius}, publisher = {Taschen}, address = {K{\"o}ln}, isbn = {978-3-8365-8806-5}, pages = {511}, year = {2022}, language = {en} } @incollection{Seco de HerreraIonescuM{\"u}lleretal.2022, author = {Seco de Herrera, Alba G. and Ionescu, Bogdan and M{\"u}ller, Henning and P{\´e}teri, Renaud and Ben Abacha, Asma and Friedrich, Christoph M. and R{\"u}ckert, Johannes and Bloch, Louise and Br{\"u}ngel, Raphael and Idrissi-Yaghir, Ahmad and Sch{\"a}fer, Henning and Kozlovski, Serge and Dicente Cid, Yashin and Kovalev, Vassili and Chamberlain, Jon and Clark, Adrian and Campello, Antonio and Schindler, Hugo and Deshayes, J{\´e}rome and Popescu, Adrian and Ştefan, Liviu-Daniel and Constantin, Mihai Gabriel and Dogariu, Mihai}, title = {ImageCLEF 2022: multimedia retrieval in medical, nature, fusion and internet applications}, series = {Advances in Information Retrieval: 44th European Conference on IR Research, ECIR 2022, Stavanger, Norway, April 10-14, 2022, Proceedings, Part II}, publisher = {Springer International Publishing}, address = {Cham}, pages = {382 -- 389}, year = {2022}, language = {en} } @article{KremerKhaniAppeletal.2022, author = {Kremer, Robert and Khani, Somayeh and Appel, Tamara and Palkowski, Heinz and Foadian, Farzad}, title = {Selective laser melting of CuSn10: simulation of mechanical properties, microstructure, and residual stresses}, series = {Materials}, volume = {15 (2022)}, number = {11}, issn = {1996-1944}, pages = {1 -- 13}, year = {2022}, language = {en} } @article{BrumannKukuk2022, author = {Brumann, Christopher and Kukuk, Markus}, title = {Evolution based single camera resectioning based on distance maps of a known geometry for Squash sports}, series = {IEEE Access}, issn = {2169-3536}, pages = {58136 -- 58150}, year = {2022}, language = {en} } @phdthesis{M{\"u}ller-Baumgart2022, type = {Bachelor Thesis}, author = {M{\"u}ller-Baumgart, Antonia}, title = {Estimation of fuel consumption of pleasure vessels based on environmental data models}, doi = {10.26205/opus-3198}, url = {https://nbn-resolving.org/urn:nbn:de:hbz:dm13-31988}, pages = {130}, year = {2022}, language = {en} } @article{Guias2022, author = {Guias, Flavius}, title = {On efficacy and effectiveness of vaccines}, series = {Spora : a journal of biomathematics}, volume = {8 (2022)}, issn = {2473-5493}, pages = {56 -- 60}, year = {2022}, language = {en} } @phdthesis{Shi2022, type = {Master Thesis}, author = {Shi, Yanchen}, title = {Power Simulation of a MIPS microAptiv UP Core implemented as a virtual ASIC prototype in a 65nm CMOS technology}, doi = {10.26205/opus-3217}, url = {https://nbn-resolving.org/urn:nbn:de:hbz:dm13-32171}, pages = {93}, year = {2022}, abstract = {This thesis presents a power simulation of a MIPS MicroAptiv UP Core implemented as a virtual ASIC prototype using Taiwan Semiconductor Manufacturing Company(TSMC) 65 nm CMOS technology. Based on the MIPS instruction set program data is generated and introduced in the simulation by means of initialization files. Before the simulation, technology specific SRAM modules are integrated into theMIPS core. Two different programs are used for power characterization. The first program performs frequent memory accesses by means of load/store word instructions, while the second program is a loop which operates on registers only and mainly increments addresses. The simulation is based on a virtual prototype which is generated by synthesis and place \& route including post-layout parasitic extractions. The stimuli for the power extraction is generated via gate-level simulation and forwarded to the power calculation engine. The effect of X-propagation on gate-level simulations is avoided by modifying the address-related statements in the execution data path module, which use another form of 2 to 1 multiplexer, setting the output to zero for all input signals even with an initial value of 'x' without changing the functionality. Finally, the consumed power is provided by reports generated by the power simulation engine. The memory-centric program consumes 35.39mW of internal power using instructions, which is 0.73mW less than the internal power of the register-centric program, and the overall average power is also lower by almost 0.7mW.}, language = {en} } @incollection{CopeiEickhoffMaliketal.2022, author = {Copei, Sebastian and Eickhoff, Christoph and Malik, Adam and Nolte, Natascha and Norbisrath, Ulrich and Sorgalla, Jonas and Weber, Jens and Z{\"u}ndorf, Albert}, title = {From monolithic models to agile micromodels}, series = {Proceedings of the 10th International Conference on Model-Driven Engineering and Software Development}, publisher = {SciTePress}, address = {Set{\´u}bal}, pages = {227 -- 233}, year = {2022}, language = {en} } @incollection{M{\"u}ller2022, author = {M{\"u}ller, Jens}, title = {A contribution to the history of graphic design}, series = {F{\´e}lix Beltr{\´a}n - visual intelligence: graphic design in a social sense}, publisher = {Optik Books}, address = {Dortmund}, pages = {8 -- 9}, year = {2022}, language = {en} }