@incollection{TranTranMatthiesetal.2017, author = {Tran, N. T. and Tran, Thanh Ngoc and Matthies, M. G. and Stavroulakis, G. E. and Staat, Manfred}, title = {Shakedown Analysis Under Stochastic Uncertainty by Chance Constrained Programming}, series = {Advances in Direct Methods for Materials and Structures}, booktitle = {Advances in Direct Methods for Materials and Structures}, publisher = {Springer}, address = {Cham}, isbn = {978-3-319-59810-9}, doi = {10.1007/978-3-319-59810-9_6}, pages = {85 -- 103}, year = {2017}, abstract = {In this paper we propose a stochastic programming method to analyse limit and shakedown of structures under uncertainty condition of strength. Based on the duality theory, the shakedown load multiplier formulated by the kinematic theorem is proved actually to be the dual form of the shakedown load multiplier formulated by static theorem. In this investigation a dual chance constrained programming algorithm is developed to calculate simultaneously both the upper and lower bounds of the plastic collapse limit and the shakedown limit. The edge-based smoothed finite element method (ES-FEM) with three-node linear triangular elements is used for structural analysis.}, language = {en} } @incollection{NiemuellerZwillingLakemeyeretal.2017, author = {Niemueller, Tim and Zwilling, Frederik and Lakemeyer, Gerhard and L{\"o}bach, Matthias and Reuter, Sebastian and Jeschke, Sabina and Ferrein, Alexander}, title = {Cyber-Physical System Intelligence}, series = {Industrial Internet of Things}, booktitle = {Industrial Internet of Things}, publisher = {Springer}, address = {Cham}, isbn = {978-3-319-42559-7}, doi = {10.1007/978-3-319-42559-7_17}, pages = {447 -- 472}, year = {2017}, abstract = {Cyber-physical systems are ever more common in manufacturing industries. Increasing their autonomy has been declared an explicit goal, for example, as part of the Industry 4.0 vision. To achieve this system intelligence, principled and software-driven methods are required to analyze sensing data, make goal-directed decisions, and eventually execute and monitor chosen tasks. In this chapter, we present a number of knowledge-based approaches to these problems and case studies with in-depth evaluation results of several different implementations for groups of autonomous mobile robots performing in-house logistics in a smart factory. We focus on knowledge-based systems because besides providing expressive languages and capable reasoning techniques, they also allow for explaining how a particular sequence of actions came about, for example, in the case of a failure.}, language = {en} } @incollection{NiemuellerLakemeyerReuteretal.2017, author = {Niemueller, T. and Lakemeyer, G. and Reuter, S. and Jeschke, S. and Ferrein, Alexander}, title = {Benchmarking of Cyber-Physical Systems in Industrial Robotics: The RoboCup Logistics League as a CPS Benchmark Blueprint}, series = {Cyber-Physical Systems: Foundations, Principles and Applications}, booktitle = {Cyber-Physical Systems: Foundations, Principles and Applications}, publisher = {Academic Press}, address = {London}, doi = {10.1016/B978-0-12-803801-7.00013-4}, pages = {193 -- 207}, year = {2017}, abstract = {In the future, we expect manufacturing companies to follow a new paradigm that mandates more automation and autonomy in production processes. Such smart factories will offer a variety of production technologies as services that can be combined ad hoc to produce a large number of different product types and variants cost-effectively even in small lot sizes. This is enabled by cyber-physical systems that feature flexible automated planning methods for production scheduling, execution control, and in-factory logistics. During development, testbeds are required to determine the applicability of integrated systems in such scenarios. Furthermore, benchmarks are needed to quantify and compare system performance in these industry-inspired scenarios at a comprehensible and manageable size which is, at the same time, complex enough to yield meaningful results. In this chapter, based on our experience in the RoboCup Logistics League (RCLL) as a specific example, we derive a generic blueprint for how a holistic benchmark can be developed, which combines a specific scenario with a set of key performance indicators as metrics to evaluate the overall integrated system and its components.}, language = {de} } @incollection{Fissabre2018, author = {Fissabre, Anke}, title = {Vom Schiff an Land oder von der Muschel zur Rocaille}, series = {Schwimmender Barock : Das Schiff als Repr{\"a}sentationsobjekt}, booktitle = {Schwimmender Barock : Das Schiff als Repr{\"a}sentationsobjekt}, editor = {Priesterjahn, Maike}, publisher = {Bebra Verlag}, address = {Berlin}, isbn = {978-3-89809-153-4}, pages = {59 -- 65}, year = {2018}, language = {de} } @incollection{YoshinobuKrauseMiyamotoetal.2018, author = {Yoshinobu, Tatsuo and Krause, Steffi and Miyamoto, Ko-ichiro and Werner, Frederik and Poghossian, Arshak and Wagner, Torsten and Sch{\"o}ning, Michael Josef}, title = {(Bio-)chemical Sensing and Imaging by LAPS and SPIM}, series = {Label-free biosensing: advanced materials, devices and applications}, booktitle = {Label-free biosensing: advanced materials, devices and applications}, publisher = {Springer}, address = {Cham}, isbn = {978-3-319-75219-8}, pages = {103 -- 132}, year = {2018}, abstract = {The light-addressable potentiometric sensor (LAPS) and scanning photo-induced impedance microscopy (SPIM) are two closely related methods to visualise the distributions of chemical species and impedance, respectively, at the interface between the sensing surface and the sample solution. They both have the same field-effect structure based on a semiconductor, which allows spatially resolved and label-free measurement of chemical species and impedance in the form of a photocurrent signal generated by a scanning light beam. In this article, the principles and various operation modes of LAPS and SPIM, functionalisation of the sensing surface for measuring various species, LAPS-based chemical imaging and high-resolution sensors based on silicon-on-sapphire substrates are described and discussed, focusing on their technical details and prospective applications.}, language = {en} } @incollection{SaldenFischerBarnat2016, author = {Salden, Peter and Fischer, Kathrin and Barnat, Miriam}, title = {Didaktische Studiengangentwicklung: Rahmenkonzepte und Praxisbeispiel}, series = {P{\"a}dagogische Hochschulentwicklung. Von der Programmierung zur Implementierung}, booktitle = {P{\"a}dagogische Hochschulentwicklung. Von der Programmierung zur Implementierung}, publisher = {Springer VS}, address = {Wiesbaden}, isbn = {978-3-658-12067-2}, doi = {10.1007/978-3-658-12067-2_9}, pages = {133 -- 149}, year = {2016}, abstract = {Die Studiengangentwicklung ist ein komplexer Prozess, in dem strukturelle Vorgaben beachtet, viele unterschiedliche Akteure/-innen einbezogen und nicht zuletzt angemessene didaktische L{\"o}sungen zum Erreichen der angestrebten Lernergebnisse gefunden werden m{\"u}ssen. Der vorliegende Text nimmt besonders den letzten Punkt in den Blick: Er zeigt, wie Studiengangentwicklung zu einem Thema der (Hochschul-)Didaktik geworden ist und wie sich der didaktische Ansatz von struktur- und prozessorientierten Ans{\"a}tzen unterscheidet, aber auch, wie er mit diesen zusammenh{\"a}ngt. An einem Beispiel aus dem Wirtschaftsingenieurwesen wird veranschaulicht, was didaktische Studiengangentwicklung in der Praxis ausmacht und wie eine konkrete Implementierung verlaufen kann. Auf dieser Grundlage wird abschließend ein erweitertes Modell der didaktischen Studiengangentwicklung vorgeschlagen.}, language = {de} } @incollection{Barnat2007, author = {Barnat, Miriam}, title = {Organisationale Lernprozesse und Machtquellen. Eine Fallstudie}, series = {Beratung, Macht und organisationales Lernen}, booktitle = {Beratung, Macht und organisationales Lernen}, publisher = {VS Verlag f{\"u}r Sozialwissenschaften}, address = {Wiesbaden}, isbn = {978-3-531-90752-9}, doi = {10.1007/978-3-531-90752-9_7}, pages = {97 -- 110}, year = {2007}, language = {de} } @incollection{BosseBarnat2019, author = {Bosse, Elke and Barnat, Miriam}, title = {Kombination qualitativer und quantitativer Methoden zur Untersuchung der Studieneinstiegsphase}, series = {Hochschulbildungsforschung : Theoretische, methodologische und methodische Denkanst{\"o}ße f{\"u}r die Hochschuldidaktik}, booktitle = {Hochschulbildungsforschung : Theoretische, methodologische und methodische Denkanst{\"o}ße f{\"u}r die Hochschuldidaktik}, publisher = {Springer VS}, address = {Wiesbaden}, isbn = {978-3-658-20309-2}, doi = {10.1007/978-3-658-20309-2_10}, pages = {169 -- 184}, year = {2019}, abstract = {Mit Hilfe der Kombination von qualitativen und quantitativen Verfahren zielen Mixed-Methods Ans{\"a}tze darauf ab, einen vertieften Einblick in komplexe Gegenst{\"a}nde zu gewinnen. In der Hochschulbildungsforschung finden sie zunehmend Anklang, da sie besonders geeignet erscheinen, das vielschichtige Wirkungsgef{\"u}ge zu erfassen, das das Lehren und Lernen an Hochschulen auszeichnet. Der Beitrag geht den Potenzialen von Mixed-Methods Ans{\"a}tzen am Beispiel einer Studie zur Studieneingangsphase nach, die den Wirkungszusammenhang zwischen der Nutzung von Angeboten f{\"u}r den Studieneinstieg und der Entwicklung von Studierf{\"a}higkeit untersucht. Der Beitrag veranschaulicht die Integration von Methoden und Ergebnissen, um Chancen und Grenzen von Mixed-Methods Studien f{\"u}r die Hochschulbildungsforschung zu diskutieren.}, language = {de} } @incollection{KirschBassen2013, author = {Kirsch, Hans-J{\"u}rgen and Bassen, Yasmine}, title = {IGW RS HFA 21 : konzeptionelle L{\"o}sung oder Einzelfall? ; Erfolg bei Spenden sammelnden Organisationen ; eine bilanztheoretische Untersuchung}, series = {Jahrbuch f{\"u}r Controlling und Rechnungswesen. Vol. 29}, booktitle = {Jahrbuch f{\"u}r Controlling und Rechnungswesen. Vol. 29}, publisher = {LexisNexis, ARD Orac}, address = {Wien}, pages = {355 -- 369}, year = {2013}, language = {de} } @incollection{SchoeningWagnerPoghossianetal.2018, author = {Sch{\"o}ning, Michael Josef and Wagner, Torsten and Poghossian, Arshak and Miyamoto, K.I. and Werner, C.F. and Krause, S. and Yoshinobu, T.}, title = {Light-addressable potentiometric sensors for (bio-)chemical sensing and imaging}, series = {Encyclopedia of Interfacial Chemistry: Surface Science and Electrochemistry. Vol. 7}, booktitle = {Encyclopedia of Interfacial Chemistry: Surface Science and Electrochemistry. Vol. 7}, publisher = {Elsevier}, address = {Amsterdam}, isbn = {9780128097397}, pages = {295 -- 308}, year = {2018}, language = {en} }