@article{SchwarzGebhardtSchleseretal.2019, author = {Schwarz, Alexander and Gebhardt, Andreas and Schleser, Markus and Popoola, Patricia}, title = {New Welding Joint Geometries Manufactured by Powder Bed Fusion from 316L}, series = {Materials Performance and Characterization 8}, journal = {Materials Performance and Characterization 8}, number = {in press}, issn = {2379-1365}, doi = {10.1520/MPC20180096}, year = {2019}, language = {en} } @article{KarschuckFilipovBollellaetal.2019, author = {Karschuck, T. L. and Filipov, Y. and Bollella, P. and Sch{\"o}ning, Michael Josef and Katz, E.}, title = {Not-XOR (NXOR) logic gate based on an enzyme-catalyzed reaction}, series = {International Journal of Unconventional Computing}, volume = {14}, journal = {International Journal of Unconventional Computing}, number = {3-4}, publisher = {Old City Publishing}, address = {Philadelphia}, issn = {1548-7199}, pages = {235 -- 242}, year = {2019}, abstract = {Enzyme-catalyzed reactions have been designed to mimic various Boolean logic gates in the general framework of unconventional biomolecular computing. While some of the logic gates, particularly OR, AND, are easy to realize with biocatalytic reactions and have been reported in numerous publications, some other, like NXOR, are very challenging and have not been realized yet with enzyme reactions. The paper reports on a novel approach to mimicking the NXOR logic gate using the bell-shaped enzyme activity dependent on pH values. Shifting pH from the optimum value to the acidic or basic values by using acid or base inputs (meaning 1,0 and 0,1 inputs) inhibits the enzyme reaction, while keeping the optimum pH (assuming 0,0 and 1,1 input combinations) preserves a high enzyme activity. The challenging part of the present approach is the selection of an enzyme with a well-demonstrated bell-shape activity dependence on the pH value. While many enzymes can satisfy this condition, we selected pyrroloquinoline quinone (PQQ)-dependent glucose dehydrogenase as this enzyme has the optimum pH center-located on the pH scale allowing the enzyme activity change by the acidic and basic pH shift from the optimum value corresponding to the highest activity. The present NXOR gate is added to the biomolecular "toolbox" as a new example of Boolean logic gates based on enzyme reactions.}, language = {en} } @inproceedings{MahdiRendonSchwageretal.2019, author = {Mahdi, Zahra and Rend{\´o}n, Carlos and Schwager, Christian and Teixeira Boura, Cristiano Jos{\´e} and Herrmann, Ulf}, title = {Novel concept for indirect solar-heated methane reforming}, series = {AIP Conference Proceedings}, volume = {2126}, booktitle = {AIP Conference Proceedings}, publisher = {AIP Publishing}, address = {Melville, NY}, issn = {0094-243X}, doi = {10.1063/1.5117694}, pages = {180014-1 -- 180014-7}, year = {2019}, language = {en} } @article{FunkeBeckmannKeinzetal.2019, author = {Funke, Harald and Beckmann, Nils and Keinz, Jan and Abanteriba, Sylvester}, title = {Numerical and Experimental Evaluation of a Dual-Fuel Dry-Low-NOx Micromix Combustor for Industrial Gas Turbine Applications}, series = {Journal of Thermal Science and Engineering Applications}, volume = {11}, journal = {Journal of Thermal Science and Engineering Applications}, number = {1}, publisher = {ASME}, address = {New York}, issn = {19485085}, doi = {10.1115/1.4041495}, pages = {011015}, year = {2019}, language = {en} } @article{ValeroVitiGualtieri2019, author = {Valero, Daniel and Viti, Nicolo and Gualtieri, Carlo}, title = {Numerical Simulation of Hydraulic Jumps. Part 1: Experimental Data for Modelling Performance Assessment}, series = {Water}, volume = {11}, journal = {Water}, number = {1}, publisher = {MDPI}, address = {Basel}, issn = {2073-4441}, doi = {10.3390/w11010036}, pages = {Art. Nr. 36}, year = {2019}, language = {en} } @article{VitiValeroGualtieri2019, author = {Viti, Nicolo and Valero, Daniel and Gualtieri, Carlo}, title = {Numerical Simulation of Hydraulic Jumps. Part 2: Recent Results and Future Outlook}, series = {Water}, volume = {11}, journal = {Water}, number = {1}, issn = {2073-4441}, doi = {10.3390/w11010028}, pages = {Art. Nr. 28}, year = {2019}, language = {en} } @inproceedings{StrieganStruthDickhoffetal.2019, author = {Striegan, Constantin J. D. and Struth, Benjamin and Dickhoff, Jens and Kusterer, Karsten and Funke, Harald and Bohn, Dieter}, title = {Numerical Simulations of the Micromix DLN Hydrogen Combustion Technology with LES and Comparison to Results of RANS and Experimental Data}, series = {Proceedings of International Gas Turbine Congress 2019 Tokyo, November 17-22, 2019, Tokyo, Japan.}, booktitle = {Proceedings of International Gas Turbine Congress 2019 Tokyo, November 17-22, 2019, Tokyo, Japan.}, isbn = {978-4-89111-010-9}, pages = {1 -- 9}, year = {2019}, language = {en} } @article{RossiHoltschoppenButenweg2019, author = {Rossi, Leonardo and Holtschoppen, Britta and Butenweg, Christoph}, title = {Official data on the economic consequences of the 2012 Emilia-Romagna earthquake: a first analysis of database SFINGE}, series = {Bulletin of Earthquake Engineering}, volume = {17}, journal = {Bulletin of Earthquake Engineering}, number = {9}, publisher = {Springer}, address = {Berlin}, doi = {10.1007\%2Fs10518-019-00655-8}, pages = {4855 -- 4884}, year = {2019}, language = {en} } @article{Gaigall2019, author = {Gaigall, Daniel}, title = {On a new approach to the multi-sample goodness-of-fit problem}, series = {Communications in Statistics - Simulation and Computation}, volume = {53}, journal = {Communications in Statistics - Simulation and Computation}, number = {10}, publisher = {Taylor \& Francis}, address = {London}, issn = {1532-4141}, doi = {10.1080/03610918.2019.1618472}, pages = {2971 -- 2989}, year = {2019}, abstract = {Suppose we have k samples X₁,₁,…,X₁,ₙ₁,…,Xₖ,₁,…,Xₖ,ₙₖ with different sample sizes ₙ₁,…,ₙₖ and unknown underlying distribution functions F₁,…,Fₖ as observations plus k families of distribution functions {G₁(⋅,ϑ);ϑ∈Θ},…,{Gₖ(⋅,ϑ);ϑ∈Θ}, each indexed by elements ϑ from the same parameter set Θ, we consider the new goodness-of-fit problem whether or not (F₁,…,Fₖ) belongs to the parametric family {(G₁(⋅,ϑ),…,Gₖ(⋅,ϑ));ϑ∈Θ}. New test statistics are presented and a parametric bootstrap procedure for the approximation of the unknown null distributions is discussed. Under regularity assumptions, it is proved that the approximation works asymptotically, and the limiting distributions of the test statistics in the null hypothesis case are determined. Simulation studies investigate the quality of the new approach for small and moderate sample sizes. Applications to real-data sets illustrate how the idea can be used for verifying model assumptions.}, language = {en} } @inproceedings{FingerGoettenBraunetal.2019, author = {Finger, Felix and G{\"o}tten, Falk and Braun, Carsten and Bil, C.}, title = {On Aircraft Design Under the Consideration of Hybrid-Electric Propulsion Systems}, series = {APISAT 2018: The Proceedings of the 2018 Asia-Pacific International Symposium on Aerospace Technology (APISAT 2018)}, booktitle = {APISAT 2018: The Proceedings of the 2018 Asia-Pacific International Symposium on Aerospace Technology (APISAT 2018)}, publisher = {Springer}, address = {Singapore}, isbn = {978-981-13-3305-7}, doi = {10.1007/978-981-13-3305-7_99}, pages = {1261 -- 1272}, year = {2019}, abstract = {A hybrid-electric propulsion system combines the advantages of fuel-based systems and battery powered systems and offers new design freedom. To take full advantage of this technology, aircraft designers must be aware of its key differences, compared to conventional, carbon-fuel based, propulsion systems. This paper gives an overview of the challenges and potential benefits associated with the design of aircraft that use hybrid-electric propulsion systems. It offers an introduction of the most popular hybrid-electric propulsion architectures and critically assess them against the conventional and fully electric propulsion configurations. The effects on operational aspects and design aspects are covered. Special consideration is given to the application of hybrid-electric propulsion technology to both unmanned and vertical take-off and landing aircraft. The authors conclude that electric propulsion technology has the potential to revolutionize aircraft design. However, new and innovative methods must be researched, to realize the full benefit of the technology.}, language = {en} } @article{BaringhausGaigall2019, author = {Baringhaus, Ludwig and Gaigall, Daniel}, title = {On an asymptotic relative efficiency concept based on expected volumes of confidence regions}, series = {Statistics - A Journal of Theoretical and Applied Statistic}, volume = {53}, journal = {Statistics - A Journal of Theoretical and Applied Statistic}, number = {6}, publisher = {Taylor \& Francis}, address = {London}, issn = {1029-4910}, doi = {10.1080/02331888.2019.1683560}, pages = {1396 -- 1436}, year = {2019}, abstract = {The paper deals with an asymptotic relative efficiency concept for confidence regions of multidimensional parameters that is based on the expected volumes of the confidence regions. Under standard conditions the asymptotic relative efficiencies of confidence regions are seen to be certain powers of the ratio of the limits of the expected volumes. These limits are explicitly derived for confidence regions associated with certain plugin estimators, likelihood ratio tests and Wald tests. Under regularity conditions, the asymptotic relative efficiency of each of these procedures with respect to each one of its competitors is equal to 1. The results are applied to multivariate normal distributions and multinomial distributions in a fairly general setting.}, language = {en} } @inproceedings{EichlerSkupinThurnetal.2019, author = {Eichler, Fabian and Skupin, Marco and Thurn, Laura and Kasch, Susanne and Schmidt, Thomas}, title = {Operating limits for beam melting of glass materials}, series = {Modern Technologies in Manufacturing (MTeM 2019)}, volume = {299}, booktitle = {Modern Technologies in Manufacturing (MTeM 2019)}, number = {Article 01004}, doi = {10.1051/matecconf/201929901004}, pages = {8 Seiten}, year = {2019}, abstract = {Laser-based Additive Manufacturing (AM) processes for the use of metals out of the powder bed have been investigated profusely and are prevalent in industry. Although there is a broad field of application, Laser Powder Bed Fusion (LPBF), also known as Selective Laser Melting (SLM) of glass is not fully developed yet. The material properties of glass are significantly different from the investigated metallic material for LPBF so far. As such, the process cannot be transferred, and the parameter limits and the process sequence must be redefined for glass. Starting with the characterization of glass powders, a parameter field is initially confined to investigate the process parameter of different glass powder using LPBFprocess. A feasibility study is carried out to process borosilicate glass powder. The effects of process parameters on the dimensional accuracy of fabricated parts out of borosilicate and hints for the post-processing are analysed and presented in this paper.}, language = {en} } @inproceedings{BaaderKellerLehmannetal.2019, author = {Baader, Fabian and Keller, Denis and Lehmann, Raphael and Gerber, Lukas and Reiswich, Martin and Dachwald, Bernd and F{\"o}rstner, Roger}, title = {Operating melting probes for ice penetration under sublimation conditions and in reduced gravity on a sounding rocket}, series = {Proceedings of the 24th ESA Symposium on European Rocket and Balloon Programmes and related Research}, booktitle = {Proceedings of the 24th ESA Symposium on European Rocket and Balloon Programmes and related Research}, issn = {0379-6566}, pages = {8 Seiten}, year = {2019}, language = {en} } @article{JungMuellerStaat2019, author = {Jung, Alexander and M{\"u}ller, Wolfram and Staat, Manfred}, title = {Optimization of the flight technique in ski jumping: the influence of wind}, number = {Early view}, publisher = {Elsevier}, address = {Amsterdam}, doi = {10.1016/j.jbiomech.2019.03.023}, year = {2019}, language = {en} } @misc{OPUS4-10963, title = {Ordnung zur Aufhebung der Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Elektrotechnik" (zuvor „Nachrichtentechnik" und „Elektrotechnik und Informationstechnik") vom 22. Januar 2010 (FH-Mitteilung Nr. 7/2010), zuletzt ge{\"a}ndert durch {\"A}nderungsordnung vom 25. April 2016 (FH-Mitteilung Nr. 31/2016) : vom 20. Dezember 2019}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10962, title = {Ordnung zur Aufhebung der Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Information Systems Engineering" vom 22. Januar 2010 (FH-Mitteilung Nr. 5/2010), zuletzt ge{\"a}ndert durch {\"A}nderungsordnung vom 4. Februar 2013 (FH-Mitteilung Nr. 6/2013) : vom 20. Dezember 2019}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10956, title = {Ordnung zur Aufhebung der Pr{\"u}fungsordnungen f{\"u}r den Masterstudiengang „Nuclear Applications" vom 13. Februar 2004 (FH-Mitteilung Nr. 5/2004) und vom 25. Februar 2010 (FH-Mitteilung Nr. 15/2010) in den Fassungen der Bekanntmachung der {\"A}nderungsordnungen vom 6. November 2012 (FH-Mitteilung Nr. 120/2012), 18. Juni 2014 (FH- Mitteilung Nr. 72/2014) und vom 15. Juni 2015 (FH-Mitteilung Nr. 28/2015) : vom 29. November 2019}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10877, title = {Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r den Bachelorstudiengang „Holzingenieurwesen" (7-semestrig) vom 16. Juli 2012 (FH-Mitteilung Nr. 66/2012) in der Fassung der Bekanntmachung der {\"A}nderungsordnungen vom 6. Juli 2016 (FH-Mitteilung Nr. 95/2016) und 16. August 2019 (FH-Mitteilung Nr. 76/2019) an der Fachhochschule Aachen : vom 24. Juli 2018 - FH-Mitteilung Nr. 120/2018 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 16. August 2019 - FH-Mitteilung Nr. 77/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10883, title = {Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Bauingenieurwesen" vom 10. Dezember 2012 (FH-Mitteilung Nr. 129/2012) in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 30. Mai 2017 (FH-Mitteilung Nr. 58/2017) und 16. August 2019 (FH-Mitteilung Nr. 80/2019) an der Fachhochschule Aachen : vom 24. Juli 2018 - FH-Mitteilung Nr. 121/2018 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 16. August 2019 - FH-Mitteilung Nr. 81/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10899, title = {Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Facility Management" vom 29. November 2012 (FH-Mitteilung Nr. 127/2012) in der Fassung der Bekanntmachung der {\"A}nderungsordnungen vom 3. Februar 2016 (FH-Mitteilung Nr. 10/2016) und 16. August 2019 (FH-Mitteilung Nr. 82/2019) an der Fachhochschule Aachen : vom 24. Juli 2018 - FH-Mitteilung Nr. 122/2018 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 16. August 2019 - FH-Mitteilung Nr. 83/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10875, title = {Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge „Bauingenieurwesen" (7-semestrig), „Bauingenieurwesen mit Praxissemester" (8-semestrig) und „Bauingenieurwesen mit Auslandssemester" (8-semestrig) vom 1. September 2011 (FH-Mitteilung Nr. 76/2011) in der Fassung der Bekanntmachung der {\"A}nderungsordnungen vom 22. August 2013 (FH-Mitteilung Nr. 88/2013), 8. Juni 2016 (FH-Mitteilung Nr. 80/2016) und 16. August 2019 (FH-Mitteilung Nr. 74/2019) an der Fachhochschule Aachen : vom 24. Juli 2018 - FH-Mitteilung Nr. 119/2018 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 16. August 2019 - FH-Mitteilung Nr. 75/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10881, title = {Ordnung zur Regelung der Einstellung des Bachelorstudiengangs Bauingenieurwesen - Netzingenieur (7-semestrig) und des dualen Bachelorstudiengangs Bauingenieurwesen - Netzingenieur (9-semestrig) im Fachbereich Bauingeieurwesen an der Fachhochschule Aachen : vom 24. Juli 2018 - FH-Mitteilung Nr. 123/2018 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 16. August 2019 - FH-Mitteilung Nr. 79/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {4 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10902, title = {Ordnung zur {\"A}nderung der Gesamtpr{\"u}fungsordnung f{\"u}r den Bachelorstudiengang „Elektrotechnik mit Orientierungssemester" an der Fachhochschule Aachen und der RWTH Aachen : vom 10. Oktober 2019}, organization = {FH Aachen}, pages = {4 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10858, title = {Ordnung zur {\"A}nderung der Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r den Bachelorstudiengang „Holzingenieurwesen" (7-semestrig) vom 16. Juli 2012 (FH-Mitteilung Nr. 66/2012) in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 6. Juli 2016 (FH-Mitteilung Nr. 95/2016) an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {2 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10862, title = {Ordnung zur {\"A}nderung der Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Bauingenieurwesen" vom 10. Dezember 2012 (FH-Mitteilung Nr. 129/2012) in der Fassung der Bekanntmachung der {\"A}nderungsordnungen vom 30. Mai 2017 (FH-Mitteilung Nr. 58/2017) an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {2 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10864, title = {Ordnung zur {\"A}nderung der Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Facility Management" vom 29. November 2012 (FH-Mitteilung Nr. 127/2012) in der Fassung der Bekanntmachung der {\"A}nderungsordnungen vom 3. Februar 2016 (FH-Mitteilung Nr. 10/2016) an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {2 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10855, title = {Ordnung zur {\"A}nderung der Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge „Bauingenieurwesen" (7-semestrig), „Bauingenieurwesen mit Praxissemester" (8-semestrig) und „Bauingenieurwesen mit Auslandssemester" (8-semestrig) vom 1. September 2011 (FH-Mitteilung Nr. 76/2011) in der Fassung der Bekanntmachung der {\"A}nderungsordnungen vom 22. August 2013 (FH- Mitteilung Nr. 88/2013) und vom 8. Juni 2016 (FH-Mitteilung Nr. 80/2016) an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {2 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10857, title = {Ordnung zur {\"A}nderung der Ordnung zur Aufhebung der Studien- und Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge „Bauingenieurwesen" (7-semestrig), „Bauingenieurwesen mit Praxissemester" (8-semestrig) und „Bauingenieurwesen mit Auslandssemester" (8-semestrig) vom 1. September 2011 (FH-Mitteilung Nr. 76/2011) in der Fassung der Bekanntmachung der {\"A}nderungsordnungen vom 22. August 2013 (FH- Mitteilung Nr. 88/2013) und vom 8. Juni 2016 (FH-Mitteilung Nr. 80/2016) an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {2 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10860, title = {Ordnung zur {\"A}nderung der Ordnung zur Regelung der Einstellung des Bachelorstudiengangs Bauingenieurwesen - Netzingenieur (7-semestrig) und des dualen Bachelorstudiengangs Bauingenieurwesen - Netzingenieur (9-semestrig) im Fachbereich Bauingeieurwesen an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {2 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10808, title = {Ordnung zur {\"A}nderung der Pr{\"u}fungsordnung f{\"u}r den Bachelorstudiengang Architektur im Fachbereich Architektur an der Fachhochschule Aachen}, address = {Aachen}, organization = {FH Aachen}, pages = {4 Seiten}, year = {2019}, abstract = {Aufgrund des \S 2 Absatz 4 Satz 1 in Verbindung mit \S 64 des Gesetzes {\"u}ber die Hochschulen des Landes Nordrhein-Westfalen (Hochschulgesetz - HG) vom 16. September 2014 (GV. NRW. S. 547), zuletzt ge{\"a}ndert durch Artikel 3 des Gesetzes vom 17. Oktober 2017 (GV. NRW. S. 806), und der Rahmenpr{\"u}fungsordnung (RPO) f{\"u}r die Bachelor- und Masterstudieng{\"a}nge an der Fachhochschule Aachen vom 1. Februar 2018 (FH-Mitteilung Nr. 3/2018) hat der Fachbereich Architektur folgende {\"A}nderung der Pr{\"u}fungsordnung vom 5. Juli 2018 (FH-Mitteilung Nr. 104/2018) erlassen.}, language = {de} } @misc{OPUS4-10947, title = {Ordnung zur {\"A}nderung der Pr{\"u}fungsordnung f{\"u}r den Bachelorstudiengang Holzingenieurwesen im Fachbereich Bauingenieurwesen an der Fachhochschule Aachen : vom 8. November 2019}, organization = {FH Aachen}, pages = {8 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10823, title = {Ordnung zur {\"A}nderung der Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang Architektur im Fachbereich Architektur an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {4 Seiten}, year = {2019}, abstract = {Aufgrund des \S 2 Absatz 4 Satz 1 in Verbindung mit \S 64 des Gesetzes {\"u}ber die Hochschulen des Landes Nordrhein-Westfalen (Hochschulgesetz - HG) vom 16. September 2014 (GV. NRW. S. 547), zuletzt ge{\"a}ndert durch Artikel 3 des Gesetzes vom 17. Oktober 2017 (GV. NRW. S. 806), und der Rahmenpr{\"u}fungsordnung (RPO) f{\"u}r die Bachelor- und Masterstudieng{\"a}nge an der Fachhochschule Aachen vom 1. Februar 2018 (FH-Mitteilung Nr. 3/2018) hat der Fachbereich Architektur folgende {\"A}nderung der Pr{\"u}fungsordnung vom 5. Juli 2018 (FH-Mitteilung Nr. 105/2018) erlassen.}, language = {de} } @misc{OPUS4-10945, title = {Ordnung zur {\"A}nderung der Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge Bauingenieurwesen, Bauingenieurwesen mit Praxissemester, Bauingenieurwesen mit Auslandssemester, Bauingenieurwesen Double Degree (NUST) und Bauingenieurwesen Dual an der Fachhochschule Aachen : vom 8. November 2019}, organization = {FH Aachen}, pages = {6 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10850, title = {Ordnung zur {\"A}nderung der Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge „Schienenfahrzeugtechnik" „Schienenfahrzeugtechnik (Teilzeit)" und „Dualer Studiengang Schienenfahrzeugtechnik (DIRail)" im Fachbereich Maschinenbau und Mechatronik an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {2}, year = {2019}, language = {de} } @misc{ReiswichBrandtCzupalla2019, author = {Reiswich, Martin and Brandt, Hannes and Czupalla, Markus}, title = {Passive thermal control by integration of phase change material into additively manufactured structures}, series = {E2. 47th Student conference}, journal = {E2. 47th Student conference}, year = {2019}, abstract = {Optical Instruments require an extremely stable thermal surrounding to prevent loss of data quality by misalignments of the instrument components resulting from material deformation due to temperature f luctuations (e.g. from solar intrusion). Phase Change Material (PCM) can be applied as a thermal damper to achieve a more uniform temperature distribution. The challenge of this method is, among others, the integration of PCM into affected areas. If correctly designed, incoming heat is latently absorbed during phase change of the PCM, i.e. the temperature of a structure remains almost constant. In a cold phase, the heat during phase change is released again latently until the PCM returns to its original state of aggregation. Thus, the structure is thermally stabilized. At FH Aachen- University of Applied Sciences research is conducted to apply PCM directly into the structures of affected components (baffles, optical benches, electronic boxes, etc.). Through the application of Additive Manufacturing, the necessary voids are directly printed into these structures and filled later with PCM. Additive Manufacturing enables complex structures that would not have been possible with conservative manufacturing methods. A corresponding Breadboard was developed and manufactured by Selective Laser Melting (SLM). The current state of research includes the handling and analysis of the Breadboard, tests and a correlation of the thermal model. The results have shown analytically and practically that it is possible to use PCM as an integral part of the structure as a thermal damper. The results serve as a basis for the further development of the technology, which should maximize performance and enable the integration of PCM into much more complex structures.}, language = {en} } @incollection{FinkenbergerHerbertMalornyetal.2019, author = {Finkenberger, Isabel Maria and Herbert, Saskia and Malorny, Thomas and Koch, Christian}, title = {Perforierte Wirklichkeit und m{\"o}gliche Zuk{\"u}nfte : ein Gespr{\"a}ch}, series = {Komplement und Verst{\"a}rker : zum Verh{\"a}ltnis von Stadtplanung, k{\"u}nstlerischen Praktiken und Kulturinstitutionen}, booktitle = {Komplement und Verst{\"a}rker : zum Verh{\"a}ltnis von Stadtplanung, k{\"u}nstlerischen Praktiken und Kulturinstitutionen}, publisher = {JOVIS Verlag}, address = {Berlin}, isbn = {978-3-86859-578-9}, pages = {108 -- 129}, year = {2019}, language = {de} } @article{RegerKuhnhenneHachuletal.2019, author = {Reger, Vitali and Kuhnhenne, Markus and Hachul, Helmut and D{\"o}ring, Bernd and Blanke, Tobias and G{\"o}ttsche, Joachim}, title = {Plusenergiegeb{\"a}ude 2.0 in Stahlleichtbauweise}, series = {Stahlbau}, volume = {88}, journal = {Stahlbau}, number = {6}, publisher = {Ernst \& Sohn}, address = {Berlin}, issn = {1437-1049 (E-journal), 0038-9145 (print)}, doi = {10.1002/stab.201900034}, pages = {522 -- 528}, year = {2019}, language = {de} } @article{JayaramanMummidisettyLoeschetal.2019, author = {Jayaraman, Chandrasekaran and Mummidisetty, Chaitanya Krishna and Loesch, Alexandra and Kaur, Sandi and Hoppe-Ludwig, Shenan and Staat, Manfred and Jayaraman, Arun}, title = {Postural and metabolic benefits of using a forearm support walker in older adults with impairments}, series = {Archives of Physical Medicine and Rehabilitation}, volume = {Volume 100}, journal = {Archives of Physical Medicine and Rehabilitation}, number = {Issue 4}, publisher = {Elsevier}, address = {Amsterdam}, issn = {0003-9993}, doi = {10.1016/j.apmr.2018.10.001}, pages = {638 -- 647}, year = {2019}, language = {en} } @book{BuchholtzBarnatBosseetal.2019, author = {Buchholtz, Nils and Barnat, Miriam and Bosse, Elke and Heemsoth, Tim and Vorh{\"o}lter, Katrin and Wibowo, Jonas}, title = {Praxistransfer in der terti{\"a}ren Bildungsforschung: Modelle, Gelingensbedingungen und Nachhaltigkeit}, publisher = {Hamburg University Press}, address = {Hamburg}, isbn = {978-3-943423-72-3}, pages = {232 Seiten}, year = {2019}, language = {de} } @article{EngelmannShashaTeemanetal.2019, author = {Engelmann, Ulrich M. and Shasha, Carolyn and Teeman, Eric and Slabu, Iona and Krishnan, Kannan M.}, title = {Predicting size-dependent heating efficiency of magnetic nanoparticles from experiment and stochastic N{\´e}el-Brown Langevin simulation}, series = {Journal of Magnetism and Magnetic Materials}, volume = {471}, journal = {Journal of Magnetism and Magnetic Materials}, number = {1}, publisher = {Elsevier}, address = {Amsterdam}, issn = {0304-8853}, doi = {10.1016/j.jmmm.2018.09.041}, pages = {450 -- 456}, year = {2019}, language = {en} } @article{KoppSchmeetsGosauetal.2019, author = {Kopp, Alexander and Schmeets, Ralf and Gosau, Martin and Friedrich, Reinhard E. and Fuest, Sandra and Behbahani, Mehdi and Barbeck, Mike and Rutkowski, Rico and Burg, Simon and Kluwe, Lan and Henningsen, Anders}, title = {Production and Characterization of Porous Fibroin Scaffolds for Regenerative Medical Application}, series = {In Vivo}, volume = {33}, journal = {In Vivo}, number = {3}, issn = {1791-7549}, doi = {10.21873/invivo.11536}, pages = {757 -- 762}, year = {2019}, language = {en} } @book{GebhardtKesslerSchwarz2019, author = {Gebhardt, Andreas and Kessler, Julia and Schwarz, Alexander}, title = {Produktgestaltung f{\"u}r die additive Fertigung}, publisher = {Hanser}, address = {M{\"u}nchen}, isbn = {978-3-446-45285-5}, pages = {XVI, 266 Seiten : Illustrationen, Diagramme}, year = {2019}, language = {de} } @misc{OPUS4-10825, title = {Pr{\"u}fungsordnung f{\"u}r den Bachelorstudiengang Architektur im Fachbereich Architektur an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {9 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10931, title = {Pr{\"u}fungsordnung f{\"u}r den dreisemestrigen Masterstudiengang „Industrial Engineering" an der Fachhochschule Aachen : vom 11. Dezember 2014 - FH-Mitteilung Nr. 154/2014 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 5. Februar 2019 - FH-Mitteilung Nr. 5/2019 (Nichtamtliche lesbare Fassung | Studienbeginn ab SS 2016)}, organization = {FH Aachen}, pages = {5 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10932, title = {Pr{\"u}fungsordnung f{\"u}r den dreisemestrigen Masterstudiengang „Industrial Engineering" an der Fachhochschule Aachen : vom 11. Dezember 2014 - FH-Mitteilung Nr. 154/2014 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 5. Februar 2019 - FH-Mitteilung Nr. 5/2019 (Nichtamtliche lesbare Fassung | Studienbeginn ab WS 2017/18)}, organization = {FH Aachen}, pages = {7 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10853, title = {Pr{\"u}fungsordnung f{\"u}r den dualen ausbildungsintegrierenden Bachelorstudiengang „Physiotherapie" und den berufsbegleitenden Bachelorstudiengang „Physiotherapie" an der Fachhochschule Aachen in Kooperation mit der Medizinischen Fakult{\"a}t der Rheinisch-Westf{\"a}lisch Technischen Hochschule Aachen und der Physiotherapieschule des Universit{\"a}tsklinikums Aachen (UK Aachen)}, organization = {FH Aachen}, pages = {9 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10848, title = {Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang Architektur im Fachbereich Architektur an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {5 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10961, title = {Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang Nuclear Applications im Fachbereich Chemie und Biotechnologie an der Fachhochschule Aachen : vom 17. Dezember 2019}, organization = {FH Aachen}, pages = {7 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10905, title = {Pr{\"u}fungsordnung f{\"u}r den Masterstudiengang „Wirtschaftsingenieurwesen" an der Fachhochschule Aachen : vom 11. Dezember 2014 - FH-Mitteilung Nr. 152/2014 in der Fassung der bekanntmachung der {\"A}nderungsordnung vom 14. Oktober 2019 - FH-Mitteilung Nr. 102/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {6 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10933, title = {Pr{\"u}fungsordnung f{\"u}r den viersemestrigen Masterstudiengang „Industrial Engineering" an der Fachhochschule Aachen : vom 11.Dezember 2014 - FH-Mitteilung Nr. 156/2014 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 5. Februar 2019 - FH-Mitteilung Nr. 6/2019 (Nichtamtliche lesbare Fassung | Studienbeginn ab WS 2015/16)}, organization = {FH Aachen}, pages = {8 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10934, title = {Pr{\"u}fungsordnung f{\"u}r den viersemestrigen Masterstudiengang „Industrial Engineering" an der Fachhochschule Aachen : vom 11.Dezember 2014 - FH-Mitteilung Nr. 156/2014 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 5. Februar 2019 - FH-Mitteilung Nr. 6/2019 (Nichtamtliche lesbare Fassung | Studienbeginn ab WS 2017/18)}, organization = {FH Aachen}, pages = {9 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10935, title = {Pr{\"u}fungsordnung f{\"u}r den viersemestrigen Masterstudiengang „Industrial Engineering" Fachbereich Wirtschaftswissenschaften Fachbereich Maschinenbau und Mechatronik an der Fachhochschule Aachen : vom 11. Dezember 2014 - FH-Mitteilung Nr. 156/2014 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 5. Februar 2019 - FH-Mitteilung Nr. 6/2019 (Nichtamtliche lesbare Fassung | Studienbeginn ab WS 2018/19)}, organization = {FH Aachen}, pages = {10 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10946, title = {Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge Bauingenieurwesen, Bauingenieurwesen mit Praxissemester, Bauingenieurwesen mit Auslandssemester, Bauingenieurwesen Double Degree (NUST), Bauingenieurwesen Dual und Bauingenieurwesen mit Orientierungssemester im Fachbereich Bauingenieurwesen an der Fachhochschule Aachen : vom 28. Juni 2018 - FH-Mitteilung Nr. 89/2018 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 8. November 2019 - FH-Mitteilung Nr. 118/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {20 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10948, title = {Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge Holzingenieurwesen, Holzingenieurwesen mit Praxissemester, Holzingenieurwesen mit Auslandssemester, Holzingenieurwesen Dual und Holzingenieurwesen mit Orientierungssemester : vom 28. Juni 2018 - FH-Mitteilung Nr. 90/2018 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 8. November 2019 - FH-Mitteilung Nr. 120/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {15 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10958, title = {Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge „Betriebswirtschaft Praxis Plus" und „Betriebswirtschaft Praxis Plus (Teilzeit)" mit dem Studienabschluss „Bachelor of Science" am Fachbereich Wirtschaftswissenschaften der Fachhochschule Aachen (PO-BWL Praxis Plus) : vom 14. Januar 2014 - FH-Mitteilung Nr. 2/2014 in der Fassung der Bekanntmachung der {\"A}nderungsordnung vom 29. November 2019 - FH-Mitteilung Nr. 128/2019 (Nichtamtliche lesbare Fassung | Studienbeginn ab WS 2019/20)}, organization = {FH Aachen}, pages = {11 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10901, title = {Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge „Elektrotechnik" und „Elektrotechnik mit Praxissemester" im Fachbereich Energietechnik an der FH Aachen : vom 10. Oktober 2019}, organization = {FH Aachen}, pages = {12 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10851, title = {Pr{\"u}fungsordnung f{\"u}r die Bachelorstudieng{\"a}nge „Schienenfahrzeugtechnik" „Schienenfahrzeugtechnik (Teilzeit)" und „Dualer Studiengang Schienenfahrzeugtechnik (DIRail)" im Fachbereich Maschinenbau und Mechatronik an der Fachhochschule Aachen}, organization = {FH Aachen}, pages = {14 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10938, title = {Pr{\"u}fungsordnung f{\"u}r die Masterstudieng{\"a}nge „Elektrotechnik" und „Elektrotechnik (Teilzeit)" im Fachbereich Elektrotechnik und Informationstechnik an der Fachhochschule Aachen : vom 5. November 2019}, organization = {FH Aachen}, pages = {9 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10950, title = {Pr{\"u}fungsordnung f{\"u}r die Masterstudieng{\"a}nge „Energiewirtschaft \& Informatik" (3 Semester) und „Energiewirtschaft \& Informatik" (4 Semester) Fachbereich Energietechnik Fachbereich Medizintechnik und Technomathematik an der Fachhochschule Aachen : vom 8. November 2019}, organization = {FH Aachen}, pages = {14 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10941, title = {Pr{\"u}fungsordnung f{\"u}r die Masterstudieng{\"a}nge „Information Systems Engineering" und „Information Systems Engineering (Teilzeit)" an der Fachhochschule Aachen : vom 5. November 2019}, organization = {FH Aachen}, pages = {9 Seiten}, year = {2019}, language = {de} } @article{KunkelGebhardtMpofuetal.2019, author = {Kunkel, Maximilian Hugo and Gebhardt, Andreas and Mpofu, Khumbulani and Kallweit, Stephan}, title = {Quality assurance in metal powder bed fusion via deep-learning-based image classification}, series = {Rapid Prototyping Journal}, volume = {26}, journal = {Rapid Prototyping Journal}, number = {2}, issn = {1355-2546}, doi = {10.1108/RPJ-03-2019-0066}, pages = {259 -- 266}, year = {2019}, language = {en} } @book{Pieper2019, author = {Pieper, Martin}, title = {Quantenmechanik : Einf{\"u}hrung in die mathematische Formulierung}, publisher = {Springer Spektrum}, address = {Wiesbaden}, isbn = {978-3-658-28329-2}, doi = {10.1007/978-3-658-28329-2}, year = {2019}, language = {de} } @book{Pieper2019, author = {Pieper, Martin}, title = {Quantenmechanik: Einf{\"u}hrung in die mathematische Formulierung}, publisher = {Springer Spektrum}, address = {Wiesbaden}, isbn = {978-3-658-28328-5}, doi = {10.1007/978-3-658-28329-2}, pages = {XI, 33 Seiten}, year = {2019}, language = {de} } @article{DantismRoehlenSelmeretal.2019, author = {Dantism, Shahriar and R{\"o}hlen, Desiree and Selmer, Thorsten and Wagner, Torsten and Wagner, Patrick and Sch{\"o}ning, Michael Josef}, title = {Quantitative differential monitoring of the metabolic activity of Corynebacterium glutamicum cultures utilizing a light-addressable potentiometric sensor system}, series = {Biosensors and Bioelectronics}, volume = {139}, journal = {Biosensors and Bioelectronics}, publisher = {Elsevier}, address = {Amsterdam}, doi = {10.1016/j.bios.2019.111332}, pages = {Artikel 111332}, year = {2019}, language = {en} } @article{NoureddineKraffLaddetal.2019, author = {Noureddine, Yacine and Kraff, Oliver and Ladd, Mark E. and Wrede, Karsten and Chen, Bixia and Quick, Harald H. and Schaefers, Georg and Bitz, Andreas}, title = {Radiofrequency induced heating around aneurysm clips using a generic birdcage head coil at 7 Tesla under consideration of the minimum distance to decouple multiple aneurysm clips}, series = {Magnetic Resonance in Medicine}, journal = {Magnetic Resonance in Medicine}, number = {Early view}, publisher = {Wiley}, address = {Weinheim}, issn = {1522-2594}, doi = {10.1002/mrm.27835}, pages = {1 -- 17}, year = {2019}, language = {en} } @article{GoettenHavermannBraunetal.2019, author = {G{\"o}tten, Falk and Havermann, Marc and Braun, Carsten and Gomez, Francisco and Bil, Cees}, title = {RANS Simulation Validation of a Small Sensor Turret for UAVs}, series = {Journal of Aerospace Engineering}, volume = {32}, journal = {Journal of Aerospace Engineering}, number = {5}, publisher = {ASCE}, address = {New York}, issn = {1943-5525}, doi = {10.1061/(ASCE)AS.1943-5525.0001055}, pages = {Article number 04019060}, year = {2019}, abstract = {Recent Unmanned Aerial Vehicle (UAV) design procedures rely on full aircraft steady-state Reynolds-Averaged-Navier-Stokes (RANS) analyses in early design stages. Small sensor turrets are included in such simulations, even though their aerodynamic properties show highly unsteady behavior. Very little is known about the effects of this approach on the simulation outcomes of small turrets. Therefore, the flow around a model turret at a Reynolds number of 47,400 is simulated with a steady-state RANS approach and compared to experimental data. Lift, drag, and surface pressure show good agreement with the experiment. The RANS model predicts the separation location too far downstream and shows a larger recirculation region aft of the body. Both characteristic arch and horseshoe vortex structures are visualized and qualitatively match the ones found by the experiment. The Reynolds number dependence of the drag coefficient follows the trend of a sphere within a distinct range. The outcomes indicate that a steady-state RANS model of a small sensor turret is able to give results that are useful for UAV engineering purposes but might not be suited for detailed insight into flow properties.}, language = {en} } @article{PoghossianGeisslerSchoening2019, author = {Poghossian, Arshak and Geissler, Hanno and Sch{\"o}ning, Michael Josef}, title = {Rapid methods and sensors for milk quality monitoring and spoilage detection}, series = {Biosensors and Bioelectronics}, volume = {140}, journal = {Biosensors and Bioelectronics}, number = {Article 111272}, publisher = {Elsevier}, address = {Amsterdam}, issn = {0956-5663}, doi = {10.1016/j.bios.2019.04.040}, year = {2019}, language = {en} } @incollection{GebhardtHoetter2019, author = {Gebhardt, Andreas and Hoetter, Jan-Steffen}, title = {Rapid Tooling}, series = {CIRP Encyclopedia of Production Engineering}, booktitle = {CIRP Encyclopedia of Production Engineering}, publisher = {Springer}, address = {Berlin, Heidelberg}, isbn = {978-3-662-53120-4}, doi = {10.1007/978-3-662-53120-4}, pages = {39 -- 52}, year = {2019}, language = {en} } @article{Olbertz2019, author = {Olbertz, Klaus}, title = {Rechtssichere Vereinbarungen von K{\"u}ndigungsfristen im Arbeitsvertrag : Weitestgehende Abdingbarkeit gesetzlicher Vorgaben erm{\"o}glicht passgenaue Gestaltungen}, series = {NWB - Steuer- und Wirtschaftsrecht}, journal = {NWB - Steuer- und Wirtschaftsrecht}, number = {23}, issn = {0028-3460}, pages = {1693 -- 1699}, year = {2019}, language = {de} } @inproceedings{ZingsheimGrimmerOrtneretal.2019, author = {Zingsheim, Jonas and Grimmer, Timo and Ortner, Marion and Schmaderer, Christoph and Hauser, Christine and Kotliar, Konstantin}, title = {Recognition of subjects with mild cognitive impairment (MCI) by the use of retinal arterial vessels.}, series = {3rd YRA MedTech Symposium 2019 : May 24 / 2019 / FH Aachen}, booktitle = {3rd YRA MedTech Symposium 2019 : May 24 / 2019 / FH Aachen}, editor = {Staat, Manfred and Erni, Daniel}, publisher = {Universit{\"a}t Duisburg-Essen}, address = {Duisburg}, organization = {MedTech Symposium}, isbn = {978-3-940402-22-6}, doi = {10.17185/duepublico/48750}, pages = {36 -- 37}, year = {2019}, language = {en} } @article{CapriMorsianiSantoroetal.2019, author = {Capri, Miriam and Morsiani, Cristina and Santoro, Aurelia and Moriggi, Manuela and Conte, Maria and Martucci, Morena and Bellavista, Elena and Fabbri, Cristina and Giampieri, Enrico and Albracht, Kirsten and Fl{\"u}ck, Martin and Ruoss, Severin and Brocca, Lorenza and Canepari, Monica and Longa, Emanuela and Giulio, Irene Di and Bottinelli, Roberto and Cerretelli, Paolo and Salvioli, Stefano and Gelfi, Cecilia and Franceschi, Claudio and Narici, Marco and Rittweger, J{\"o}rn}, title = {Recovery from 6-month spaceflight at the International Space Station: muscle-related stress into a proinflammatory setting}, series = {The FASEB journal : official publication of the Federation of American Societies for Experimental Biology}, volume = {33}, journal = {The FASEB journal : official publication of the Federation of American Societies for Experimental Biology}, number = {4}, doi = {10.1096/fj.201801625R}, pages = {5168 -- 5180}, year = {2019}, language = {en} } @article{Golland2019, author = {Golland, Alexander}, title = {Reichweite des "Joint Controllership": Neue Fragen der gemeinsamen Verantwortlichkeit}, series = {K\&R Kommunikation \& Recht}, volume = {22}, journal = {K\&R Kommunikation \& Recht}, number = {9}, publisher = {dfv Mediengruppe, Deutscher Fachverlag GmbH}, address = {Frankfurt am Main}, issn = {1434-6354}, pages = {533 -- 537}, year = {2019}, abstract = {Kein Urteil zum Datenschutzrecht sorgte im vergangenen Jahr f{\"u}r mehr panische Reaktionen als die Entscheidung des EuGH in der Rechtssache "Wirtschaftsakademie Schleswig-Holstein"(C-210/16). Das Urteil warf in datenschutzrechtlicher Literatur und {\"O}ffentlichkeit zahlreiche Fragen auf: Ist jetzt jeder "gemeinsam" Verantwortlicher? Was sind die Kriterien? Der EuGH hat k{\"u}rzlich in einem - dem allgemeinen Vernehmen nach aufsehenerregenden, de facto aber kaum {\"u}berraschenden - Urteil f{\"u}r Klarheit gesorgt. Dabei hat das Gericht jedoch einige Fragen offengelassen und neue Fragen aufgeworfen. Ein Blick auf alte und neue Herausforderungen in Kooperationsszenarien.}, language = {de} } @article{QuittmannAbelAlbrachtetal.2019, author = {Quittmann, Oliver J. and Abel, Thomas and Albracht, Kirsten and Str{\"u}der, Heiko K.}, title = {Reliability of muscular activation patterns and their alterations during incremental handcycling in able-bodied participants}, series = {Sports Biomechanics}, journal = {Sports Biomechanics}, number = {Article in press}, publisher = {Taylor \& Francis}, address = {London}, issn = {1752-6116}, doi = {10.1080/14763141.2019.1593496}, year = {2019}, language = {en} } @inproceedings{GrundmannBauerBodenetal.2019, author = {Grundmann, Jan Thimo and Bauer, Waldemar and Boden, Ralf Christian and Ceriotti, Matteo and Cordero, Federico and Dachwald, Bernd and Dumont, Etienne and Grimm, Christian D. and Hercik, D. and Herique, A. and Ho, Tra-Mi and Jahnke, Rico and Kofman, Wlodek and Lange, Caroline and Lichtenheldt, Roy and McInnes, Colin R. and Mikschl, Tobias and Montenegro, Sergio and Moore, Iain and Pelivan, Ivanka and Peloni, Alessandro and Plettenmeier, Dirk and Quantius, Dominik and Reershemius, Siebo and Renger, Thomas and Riemann, Johannes and Rogez, Yves and Ruffer, Michael and Sasaki, Kaname and Schmitz, Nicole and Seboldt, Wolfgang and Seefeldt, Patric and Spietz, Peter and Spr{\"o}witz, Tom and Sznajder, Maciej and Toth, Norbert and Viavattene, Giulia and Wejmo, Elisabet and Wolff, Friederike and Ziach, Christian}, title = {Responsive exploration and asteroid characterization through integrated solar sail and lander development using small spacecraft technologies}, series = {IAA Planetary Defense Conference}, booktitle = {IAA Planetary Defense Conference}, year = {2019}, abstract = {In parallel to the evolution of the Planetary Defense Conference, the exploration of small solar system bodies has advanced from fast fly-bys on the sidelines of missions to the planets to the implementation of dedicated sample-return and in-situ analysis missions. Spacecraft of all sizes have landed, touch-and-go sampled, been gently beached, or impacted at hypervelocity on asteroid and comet surfaces. More have flown by close enough to image their surfaces in detail or sample their immediate environment, often as part of an extended or re-purposed mission. And finally, full-scale planetary defense experiment missions are in the making. Highly efficient low-thrust propulsion is increasingly applied beyond commercial use also in mainstream and flagship science missions, in combination with gravity assist propulsion. Another development in the same years is the growth of small spacecraft solutions, not in size but in numbers and individual capabilities. The on-going NASA OSIRIS-REx and JAXA HAYABUSA2 missions exemplify the trend as well as the upcoming NEA SCOUT mission or the landers MINERVA-II and MASCOT recently deployed on Ryugu. We outline likely as well as possible and efficient routes of continuation of all these developments towards a propellant-less and highly efficient class of spacecraft for small solar system body exploration: small spacecraft solar sails designed for carefree handling and equipped with carried landers and application modules, for all asteroid user communities -planetary science, planetary defence, and in-situ resource utilization. This projection builds on the experience gained in the development of deployable membrane structures leading up to the successful ground deployment test of a (20 m)² solar sail at DLR Cologne and in the 20 years since. It draws on the background of extensive trajectory optimization studies, the qualified technology of the DLR GOSSAMER-1 deployment demonstrator, and the MASCOT asteroid lander. These enable 'now-term' as well as near-term hardware solutions, and thus responsive fast-paced development. Mission types directly applicable to planetary defense include: single and Multiple NEA Rendezvous ((M)NR) for mitigation precursor, target monitoring and deflection follow-up tasks; sail-propelled head-on retrograde kinetic impactors (RKI) for mitigation; and deployable membrane based methods to modify the asteroid's properties or interact with it. The DLR-ESTEC GOSSAMER Roadmap initiated studies of missions uniquely feasible with solar sails such as Displaced L1 (DL1) space weather advance warning and monitoring and Solar Polar Orbiter (SPO) delivery which demonstrate the capability of near-term solar sails to achieve NEA rendezvous in any kind of orbit, from Earth-coorbital to extremely inclined and even retrograde orbits. For those mission types using separable payloads, such as SPO, (M)NR and RKI, design concepts can be derived from the separable Boom Sail Deployment Units characteristic of DLR GOSSAMER solar sail technology, nanolanders like MASCOT, or microlanders like the JAXA-DLR Jupiter Trojan Asteroid Lander for the OKEANOS mission which can shuttle from the sail to the asteroids visited and enable multiple NEA sample-return missions. These are an ideal match for solar sails in micro-spacecraft format whose launch configurations are compatible with ESPA and ASAP secondary payload platforms.}, language = {en} } @inproceedings{GrundmannBauerBodenetal.2019, author = {Grundmann, Jan Thimo and Bauer, Waldemar and Boden, Ralf Christian and Ceriotti, Matteo and Cordero, Federico and Dachwald, Bernd and Dumont, Etienne and Grimm, Christian D. and Hercik, D. and Herique, A. and Ho, Tra-Mi and Jahnke, Rico and Kofman, Wlodek and Lange, Caroline and Lichtenheldt, Roy and McInnes, Colin R. and Mikschl, Tobias and Mikulz, Eugen and Montenegro, Sergio and Moore, Iain and Pelivan, Ivanka and Peloni, Alessandro and Plettemeier, Dirk and Quantius, Dominik and Reershemius, Siebo and Renger, Thomas and Riemann, Johannes and Rogez, Yves and Ruffer, Michael and Sasaki, Kaname and Schmitz, Nicole and Seboldt, Wolfgang and Seefeldt, Patric and Spietz, Peter and Spr{\"o}witz, Tom and Sznajder, Maciej and Toth, Norbert and Viavattene, Giulia and Wejmo, Elisabet and Wolff, Friederike and Ziach, Christian}, title = {Responsive integrated small spacecraft solar sail and payload design concepts and missions}, series = {Conference: 5th International Symposium on Solar Sailing (ISSS 2019)}, booktitle = {Conference: 5th International Symposium on Solar Sailing (ISSS 2019)}, year = {2019}, abstract = {Asteroid mining has the potential to greatly reduce the cost of in-space manufacturing, production of propellant for space transportation and consumables for crewed spacecraft, compared to launching the required resources from Earth's deep gravity well. This paper discusses the top-level mission architecture and trajectory design for these resource-return missions, comparing high-thrust trajectories with continuous low-thrust solar-sail trajectories. This work focuses on maximizing the economic Net Present Value, which takes the time-cost of finance into account and therefore balances the returned resource mass and mission duration. The different propulsion methods will then be compared in terms of maximum economic return, sets of attainable target asteroids, and mission flexibility. This paper provides one more step towards making commercial asteroid mining an economically viable reality by integrating trajectory design, propulsion technology and economic modelling.}, language = {en} } @misc{Golland2019, author = {Golland, Alexander}, title = {Rezension zu: Gola/Heckmann, BDSG, Kommentar, 13. Auflage (2019)}, series = {DSB Datenschutz-Berater}, volume = {43}, journal = {DSB Datenschutz-Berater}, number = {5}, issn = {0170-7256}, pages = {120 -- 120}, year = {2019}, language = {de} } @misc{Golland2019, author = {Golland, Alexander}, title = {Rezension zu: Ochs, Friedewald, Hess, Lamla - Die Zukunft der Daten{\"o}konomie. Zwischen Gesch{\"a}ftsmodell, Kollektivgut und Verbraucherschutz (2019)}, series = {DSB Datenschutz-Berater}, volume = {43}, journal = {DSB Datenschutz-Berater}, number = {12}, publisher = {DFV Mediengruppe}, address = {Frankfurt a.M.}, issn = {0170-7256}, pages = {298 -- 298}, year = {2019}, language = {de} } @misc{Golland2019, author = {Golland, Alexander}, title = {Rezension zu: Reimer - Verwaltungsdatenschutzrecht: Das neue Recht f{\"u}r die beh{\"o}rdliche Praxis (2019)}, series = {DSB Datenschutz-Berater}, volume = {43}, journal = {DSB Datenschutz-Berater}, number = {9}, issn = {0170-7256}, pages = {210 -- 210}, year = {2019}, language = {de} } @misc{Golland2019, author = {Golland, Alexander}, title = {Rezension zu: Simitis/Hornung/Spiecker gen. D{\"o}hmann - Datenschutzrecht (2019)}, series = {DSB Datenschutz-Berater}, volume = {43}, journal = {DSB Datenschutz-Berater}, number = {3}, publisher = {DFV Mediengruppe}, address = {Frankfurt a.M.}, isbn = {0170-7256}, pages = {44 -- 44}, year = {2019}, language = {de} } @misc{OPUS4-10960, title = {Richtlinie des Rektorats der FH Aachen f{\"u}r die Vergabe von Lehrveranstaltungspr{\"a}mien : vom 16. Juli 2012 - FH-Mitteilung Nr. 68/2012 in der Fassung der Bekanntmachung der {\"A}nderung vom 13. Dezember 2019 - FH-Mitteilung Nr. 130/2019 (Nichtamtliche lesbare Fassung)}, organization = {FH Aachen}, pages = {3 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10953, title = {Richtlinie f{\"u}r die Besch{\"a}ftigung und Verg{\"u}tung studentischer und wissenschaftlicher Hilfskr{\"a}fte an der Fachhochschule Aachen : vom 20. November 2019}, organization = {FH Aachen}, pages = {6 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10954, title = {Richtlinie f{\"u}r die Besch{\"a}ftigung und Verg{\"u}tung studentischer und wissenschaftlicher Hilfskr{\"a}fte an der Fachhochschule Aachen : vom 20. November 2019 aktualisiert am 24. November 2022}, organization = {FH Aachen}, pages = {6 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10951, title = {Richtlinie zur Durchf{\"u}hrung von Sonderveranstaltungen in den Geb{\"a}uden und Liegenschaften der FH Aachen (Veranstaltungsrichtlinie) : vom 20. November 2019}, organization = {FH Aachen}, pages = {21 Seiten}, year = {2019}, language = {de} } @misc{OPUS4-10952, title = {Richtlinie zur Durchf{\"u}hrung von Sonderveranstaltungen in den Geb{\"a}uden und Liegenschaften der FH Aachen (Veranstaltungsrichtlinie) : vom 20. November 2019 Anlage 1 aktualisiert am 22. Januar 2020}, organization = {FH Aachen}, pages = {21 Seiten}, year = {2019}, language = {de} } @incollection{Czarnecki2019, author = {Czarnecki, Christian}, title = {Robotergesteuerte Prozessautomatisierung}, series = {Enzyklop{\"a}die der Wirtschaftsinformatik}, booktitle = {Enzyklop{\"a}die der Wirtschaftsinformatik}, publisher = {Gito}, address = {Berlin}, pages = {1 -- 3}, year = {2019}, language = {de} } @article{ValeroChansonBung2019, author = {Valero, Daniel and Chanson, Hubert and Bung, Daniel Bernhard}, title = {Robust estimators for turbulence properties assessment}, pages = {1 -- 24}, year = {2019}, language = {en} } @article{HueningHillgaertnerReke2019, author = {H{\"u}ning, Felix and Hillg{\"a}rtner, Michael and Reke, Michael}, title = {Rolling Labs - Teaching Vehicle Electronics from the Beginning}, series = {International Journal of Engineering Pedagogy (iJEP)}, volume = {9}, journal = {International Journal of Engineering Pedagogy (iJEP)}, number = {1}, issn = {2192-4880}, doi = {10.3991/ijep.v9i1.9241}, pages = {34 -- 49}, year = {2019}, language = {en} } @book{PieperBuggertFissabreetal.2019, author = {Pieper, Jan and Buggert, Daniel and Fissabre, Anke and Helmenstein, Caroline and Niethammer, Bernhard and Schindler, Bruno}, title = {Sabbioneta: Atlas}, publisher = {Geym{\"u}ller - Verlag f{\"u}r Architektur}, address = {Aachen}, isbn = {978-3-943164-21-3}, pages = {264 S.}, year = {2019}, language = {de} } @incollection{Krause2019, author = {Krause, Thomas}, title = {Schalung und Ger{\"u}ste}, series = {{\"U}bungsaufgaben und Berechnungen f{\"u}r den Baubetrieb}, booktitle = {{\"U}bungsaufgaben und Berechnungen f{\"u}r den Baubetrieb}, publisher = {Springer Vieweg}, address = {Wiesbaden}, isbn = {978-3-658-23127-9 (Online)}, doi = {10.1007/978-3-658-23127-9_9}, pages = {241 -- 253}, year = {2019}, abstract = {Die grunds{\"a}tzliche Planung von Schalungsaufgaben wird heute in der Regel im Rahmen der Arbeitsvorbereitung von den entsprechenden Stabsabteilungen oder als Serviceleistung von den Schalungsherstellern mit Anwendung von spezieller Software und den technischen Unterlagen f{\"u}r die jeweiligen Schalungsger{\"a}te durchgef{\"u}hrt. Diese Programme und technischen Unterlagen stehen in der Regel auch den Mitarbeitern in der Bauleitung zur Verf{\"u}gung, werden dort aber eher seltener genutzt. Zur Anwendung auf der Baustelle stellen die Schalungshersteller neben den technischen Unterlagen Bemessungstabellen zur Verf{\"u}gung, welche die Auswahl und Dimensionierung einzelner Schalungen wesentlich erleichtern. Die nachfolgend aufgef{\"u}hrten Beispiele aus dem Bereich Schalung und Ger{\"u}ste beschreiben Aufgaben, die im Baustellenbetrieb auf die Bauleitung zu kommen k{\"o}nnen und auch ohne Unterst{\"u}tzung einer Stabsabteilung gel{\"o}st werden k{\"o}nnen.}, language = {de} } @inproceedings{SchmidtsKraftSiebigterothetal.2019, author = {Schmidts, Oliver and Kraft, Bodo and Siebigteroth, Ines and Z{\"u}ndorf, Albert}, title = {Schema Matching with Frequent Changes on Semi-Structured Input Files: A Machine Learning Approach on Biological Product Data}, series = {Proceedings of the 21st International Conference on Enterprise Information Systems - Volume 1: ICEIS}, booktitle = {Proceedings of the 21st International Conference on Enterprise Information Systems - Volume 1: ICEIS}, isbn = {978-989-758-372-8}, doi = {10.5220/0007723602080215}, pages = {208 -- 215}, year = {2019}, language = {en} } @misc{HojdisMulthauptReckeretal.2019, author = {Hojdis, Nils and Multhaupt, Hendrik and Recker, Carla and Wark, Michael}, title = {Schwefelvernetzbare Kautschukmischung, Vulkanisat der Kautschukmischung und Fahrzeugreifen}, year = {2019}, abstract = {Die Erfindung betrifft eine schwefelvernetzbare Kautschukmischung, deren Vulkanisat und einen Fahrzeugreifen. Die erfindungsgem{\"a}ße Kautschukmischung enth{\"a}lt wenigstens folgende Bestandteile: - Wenigstens einen Dienkautschuk; - wenigstens eine Kohle (HTC-Kohle), die mittels hydrothermaler Karbonisierung von wenigstens einer Ausgangssubstanz hergestellt ist. Der erfindungsgem{\"a}ße Fahrzeugreifen weist in wenigstens einem Bauteil wenigstens ein erfindungsgem{\"a}ßes Vulkanisat der Kautschukmischung auf.}, language = {de} } @misc{DauerHojdisMuelleretal.2019, author = {Dauer, David-Raphael and Hojdis, Nils and M{\"u}ller, Norbert and Recker, Carla and Schax, Fabian and Sch{\"o}ffel, Julia and Tarantola, Gesa and Weber, Christine}, title = {Schwefelvernetzbare Kautschukmischung, Vulkanisat der Kautschukmischung und Fahrzeugreifen}, year = {2019}, abstract = {Die Erfindung betrifft eine schwefelvernetzbare Kautschukmischung, deren Vulkanisat und einen Fahrzeugreifen. Die schwefelvernetzbare Kautschukmischung enth{\"a}lt wenigstens die folgenden Bestandteile: - wenigstens einen Dienkautschuk; und - 10 bis 300 phr wenigstens einer Kiesels{\"a}ure; und - 1 bis 30 phf wenigstens eines Silans A mit der allgemeinen Summenformel A-I) A-I)(R1)oSi-R2-(S-R3)q-S-X; und - 0,5 bis 30 phf wenigstens eines Silans B mit der allgemeinen Summenformel B-I) B-I) (R1)oSi-R2-(S-R3)u-S-R2-Si(R1)o wobei q =1, 2 oder 3 ist; und u = 1, 2 oder 3 ist; und X ein Wasserstoffatom oder eine -C(=O)-R8 Gruppe ist wobei R8 ausgew{\"a}hlt ist aus Wasserstoff, C1-C20 Alkylgruppen, vorzugsweise C1-C17, C6-C20- Arylgruppen, vorzugsweise Phenyl, C2-C20-Alkenylgruppen und C7-C20-Aralkylgruppen.}, language = {de} } @misc{DauerHojdisMuelleretal.2019, author = {Dauer, David-Raphael and Hojdis, Nils and M{\"u}ller, Norbert and Recker, Carla and Schax, Fabian and Sch{\"o}ffel, Julia and Tarantola, Gesa and Weber, Christine}, title = {Schwefelvernetzbare Kautschukmischung, Vulkanisat der Kautschukmischung und Fahrzeugreifen}, year = {2019}, abstract = {Die Erfindung betrifft eine schwefelvernetzbare Kautschukmischung, deren Vulkanisat und einen Fahrzeugreifen.Die schwefelvernetzbare Kautschukmischung enth{\"a}lt wenigstens die folgenden Bestandteile:- wenigstens einen Dienkautschuk; und- 10 bis 300 phr wenigstens einer Kiesels{\"a}ure ; und- 1 bis 30 phf wenigstens eines Silans A mit der allgemeinen Summenformel A-I)und- 0,5 bis 30 phf wenigstens eines Silans B mit der allgemeinen Summenformel B-I)wobei u gleich 0, 1, 2 oder 3 und v gleich 0 oder 1 ist.}, language = {de} } @article{PilasSelmerKeusgenetal.2019, author = {Pilas, Johanna and Selmer, Thorsten and Keusgen, Michael and Sch{\"o}ning, Michael Josef}, title = {Screen-printed carbon electrodes modified with graphene oxide for the design of a reagent-free NAD+-dependent biosensor array}, series = {Analytical Chemistry}, volume = {91}, journal = {Analytical Chemistry}, number = {23}, publisher = {ACS Publications}, address = {Washington}, doi = {10.1021/acs.analchem.9b04481}, pages = {15293 -- 15299}, year = {2019}, language = {en} } @incollection{ButenwegHoltschoppen2019, author = {Butenweg, Christoph and Holtschoppen, Britta}, title = {Seismic design of structures and components in industrial units}, series = {Structural Dynamics with Applications in Earthquake and Wind Engineering}, booktitle = {Structural Dynamics with Applications in Earthquake and Wind Engineering}, publisher = {Springer}, address = {Berlin}, isbn = {978-3-662-57550-5}, doi = {10.1007/978-3-662-57550-5_5}, pages = {359 -- 481}, year = {2019}, abstract = {Industrial units consist of the primary load-carrying structure and various process engineering components, the latter being by far the most important in financial terms. In addition, supply structures such as free-standing tanks and silos are usually required for each plant to ensure the supply of material and product storage. Thus, for the earthquake-proof design of industrial plants, design and construction rules are required for the primary structures, the secondary structures and the supply structures. Within the framework of these rules, possible interactions of primary and secondary structures must also be taken into account. Importance factors are used in seismic design in order to take into account the usually higher risk potential of an industrial unit compared to conventional building structures. Industrial facilities must be able to withstand seismic actions because of possibly wide-ranging damage consequences in addition to losses due to production standstill and the destruction of valuable equipment. The chapter presents an integrated concept for the seismic design of industrial units based on current seismic standards and the latest research results. Special attention is devoted to the seismic design of steel thin-walled silos and tank structures.}, language = {en} } @article{AchtsnichtNeuendorfFassbenderetal.2019, author = {Achtsnicht, Stefan and Neuendorf, Christian and Faßbender, Tobias and N{\"o}lke, Greta and Offenh{\"a}usser, Andreas and Krause, Hans-Joachim and Schr{\"o}per, Florian}, title = {Sensitive and rapid detection of cholera toxin subunit B using magnetic frequency mixing detection}, series = {Plos One}, volume = {14}, journal = {Plos One}, number = {7}, publisher = {Plos}, address = {San Francisco}, issn = {1932-6203}, doi = {10.1371/journal.pone.0219356}, pages = {e0219356}, year = {2019}, abstract = {Cholera is a life-threatening disease caused by the cholera toxin (CT) as produced by some Vibrio cholerae serogroups. In this research we present a method which directly detects the toxin's B subunit (CTB) in drinking water. For this purpose we performed a magnetic sandwich immunoassay inside a 3D immunofiltration column. We used two different commercially available antibodies to capture CTB and for binding to superparamagnetic beads. ELISA experiments were performed to select the antibody combination. The beads act as labels for the magnetic frequency mixing detection technique. We show that the limit of detection depends on the type of magnetic beads. A nonlinear Hill curve was fitted to the calibration measurements by means of a custom-written python software. We achieved a sensitive and rapid detection of CTB within a broad concentration range from 0.2 ng/ml to more than 700 ng/ml.}, language = {en} } @article{CornelisGivanoudiYongabietal.2019, author = {Cornelis, Peter and Givanoudi, Stella and Yongabi, Derick and Iken, Heiko and Duw{\´e}, Sam and Deschaume, Olivier and Robbens, Johan and Dedecker, Peter and Bartic, Carmen and W{\"u}bbenhorst, Michael and Sch{\"o}ning, Michael Josef and Heyndrickx, Marc and Wagner, Patrick}, title = {Sensitive and specific detection of E. coli using biomimetic receptors in combination with a modified heat-transfer method}, series = {Biosensors and Bioelectronics}, volume = {136}, journal = {Biosensors and Bioelectronics}, publisher = {Elsevier}, address = {Amsterdam}, issn = {0956-5663}, doi = {10.1016/j.bios.2019.04.026}, pages = {97 -- 105}, year = {2019}, language = {en} } @inproceedings{RingsLudowicyFingeretal.2019, author = {Rings, Ren{\´e} and Ludowicy, Jonas and Finger, Felix and Braun, Carsten and Bil, Cees}, title = {Sensitivity Analysis of General Aviation Aircraft with Parallel Hybrid-Electric Propulsion Systems}, series = {Asia Pacific International Symposium on Aerospace Technology. APISAT 2019}, booktitle = {Asia Pacific International Symposium on Aerospace Technology. APISAT 2019}, pages = {14 Seiten}, year = {2019}, language = {en} } @article{ThomaRavi2019, author = {Thoma, Andreas and Ravi, Sridhar}, title = {Significance of parallel computing on the performance of Digital Image Correlation algorithms in MATLAB}, pages = {1 -- 17}, year = {2019}, abstract = {Digital Image Correlation (DIC) is a powerful tool used to evaluate displacements and deformations in a non-intrusive manner. By comparing two images, one of the undeformed reference state of a specimen and another of the deformed target state, the relative displacement between those two states is determined. DIC is well known and often used for post-processing analysis of in-plane displacements and deformation of specimen. Increasing the analysis speed to enable real-time DIC analysis will be beneficial and extend the field of use of this technique. Here we tested several combinations of the most common DIC methods in combination with different parallelization approaches in MATLAB and evaluated their performance to determine whether real-time analysis is possible with these methods. To reflect improvements in computing technology different hardware settings were also analysed. We found that implementation problems can reduce the efficiency of a theoretically superior algorithm such that it becomes practically slower than a suboptimal algorithm. The Newton-Raphson algorithm in combination with a modified Particle Swarm algorithm in parallel image computation was found to be most effective. This is contrary to theory, suggesting that the inverse-compositional Gauss-Newton algorithm is superior. As expected, the Brute Force Search algorithm is the least effective method. We also found that the correct choice of parallelization tasks is crucial to achieve improvements in computing speed. A poorly chosen parallelisation approach with high parallel overhead leads to inferior performance. Finally, irrespective of the computing mode the correct choice of combinations of integerpixel and sub-pixel search algorithms is decisive for an efficient analysis. Using currently available hardware realtime analysis at high framerates remains an aspiration.}, language = {en} } @inproceedings{BertschMeineckeWolfetal.2019, author = {Bertsch, Timo and Meinecke, Matthias and Wolf, Martin R. and Schmunk, Karina}, title = {Smart-Living-Services nur gegen Daten? Process-Mining als M{\"o}glichkeit zur Steigerung der Akzeptanz!}, series = {Angewandte Forschung in der Wirtschaftsinformatik 2019 : Tagungsband zur 32. AKWI-Jahrestagung / hrsg. von Martin R. Wolf, Thomas Barton, Frank Herrmann, Vera G. Meister, Christian M{\"u}ller, Christian Seel}, booktitle = {Angewandte Forschung in der Wirtschaftsinformatik 2019 : Tagungsband zur 32. AKWI-Jahrestagung / hrsg. von Martin R. Wolf, Thomas Barton, Frank Herrmann, Vera G. Meister, Christian M{\"u}ller, Christian Seel}, publisher = {mana-Buch}, address = {Heide}, isbn = {978-3-944330-62-4}, pages = {216 -- 226}, year = {2019}, abstract = {Seit Jahren etablieren sich Technologien in unserem Alltag, die mit Hilfe von smarten Komponenten neue Services und Vernetzungsm{\"o}glichkeiten schaffen. Dieses Paper beschreibt die Ergebnisse einer Studie, die die Akzeptanz von IoT-gest{\"u}tzten, smarten Services im privaten Umfeld untersucht. Dabei wird eine zentrale Datenverarbeitung mit automatisierter Erstellung smarter Services der dezentralen Datenverarbeitung mit manueller Serviceerstellung in sieben Kategorien gegen{\"u}bergestellt. Die Auswertung der Studie legt die Forschungsfrage nahe, ob das Nutzerverhalten im Kontext Smart Living nicht auch mit einem dezentralen L{\"o}sungsansatz, und somit unabh{\"a}ngig von großen Unternehmen, analysiert werden kann. Hierf{\"u}r wird im zweiten Teil des Papers die Anwendbarkeit von Process-Mining im Bereich Smart Living untersucht und prototypisch getestet.}, language = {de} }