@article{31024,
  abstract     = {{Im Zuge der systemweiten Einführung schulischer Inklusion gewinnen Ansätze einer Inklusion unterstützenden Didaktik zunehmend an Bedeutung. Der Beitrag beschreibt zunächst ausgehend vom Inklusionsbegriff die fünf Leitlinien des Bielefelder Ansatzes einer Didaktik für inklusive Lerngruppen: die Akzeptanz aller Schülerinnen und Schüler in ihrer Individualität, der Einsatz förderdiagnostisch fundierter individualisierter Curricula, die Verwirklichung eines adaptiven und binnendifferenzierten Unterrichts, eine besondere Aufmerksamkeit für die Herstellung von Gemeinsamkeit aller Schüler und die didaktische Umsetzung dieser Aspekte im Co-Teaching [...]. Anhand der Ergebnisse einer Interview-Studie mit Experten aus der Praxis wird dieser Ansatz in einem zweiten Schritt auf Praxisrelevanz überprüft und reflektiert.}},
  author       = {{Textor, Annette and Kullmann, Harry and Lütje-Klose, Birgit}},
  journal      = {{Jahrbuch für Allgemeine Didaktik}},
  keywords     = {{Inklusion, Didaktik, Unterricht, Co-Teaching, Individualisierung, Soziale Integration, Einstellungen}},
  pages        = {{69–91}},
  title        = {{{Eine Inklusion unterstützende Didaktik – Rekonstruktionen aus der Perspektive inklusionserfahrener Lehrkräfte}}},
  volume       = {{4}},
  year         = {{2014}},
}

@article{4699,
  author       = {{Becker, Jörg and Beverungen, Daniel and Knackstedt, Ralf and Matzner, Martin and Müller, Oliver and Pöppelbuss, Jens}},
  issn         = {{09050167}},
  journal      = {{Scandinavian Journal of Information Systems}},
  keywords     = {{Business process management, Conceptual modeling, Interaction routines, Modular design, Service networks, Social construction}},
  number       = {{1}},
  pages        = {{17----47}},
  title        = {{{Designing interaction routines in service networks: A modularity and social construction-based approach}}},
  year         = {{2013}},
}

@article{5717,
  abstract     = {{Although professional service providers increasingly deliver their services globally, little is known about cross-cultural differences in customers’ motivation to participate in service production. To address this lacuna, we survey a total of 2,284 banking customers in 11 countries on their motivation to provide personal information to, and follow the advice of, their service providers. We find differences in both aspects, but only the differences in providing personal information can be explained by the cultural values of uncertainty avoidance, individualism/collectivism, and masculinity/femininity. To perform certain tasks in the service process, global professional service providers should acknowledge cultural differences in customers’ motivations.}},
  author       = {{Schumann, Jan H and Wünderlich, Nancy and Zimmer, Marcus S}},
  journal      = {{Schmalenbach Business Review}},
  keywords     = {{Co-Production, Culture, Customer Participation, Professional Services}},
  number       = {{2}},
  pages        = {{141--165}},
  publisher    = {{Springer}},
  title        = {{{Culture’s Impact on Customer Motivation to Engage in Professional Service Enactments.}}},
  volume       = {{64}},
  year         = {{2012}},
}

@article{2412,
  abstract     = {{ Reconfigurable architectures that tightly integrate a standard CPU core with a field-programmable hardware structure have recently been receiving impact of these design decisions on the overall system performance is a challenging task. In this paper, we first present a framework for the cycle-accurate performance evaluation of hybrid reconfigurable processors on the system level. Then, we discuss a reconfigurable processor for data-streaming applications, which attaches a coarse-grained reconfigurable unit to the coprocessor interface of a standard embedded CPU core. By means of a case study we evaluate the system-level impact of certain design features for the reconfigurable unit, such as multiple contexts, register replication, and hardware context scheduling. The results illustrate that a system-level evaluation framework is of paramount importance for studying the architectural trade-offs and optimizing design parameters for reconfigurable processors.}},
  author       = {{Enzler, Rolf and Plessl, Christian and Platzner, Marco}},
  journal      = {{Microprocessors and Microsystems}},
  keywords     = {{FPGA, reconfigurable computing, co-simulation, Zippy}},
  number       = {{2-3}},
  pages        = {{63--73}},
  publisher    = {{Elsevier}},
  title        = {{{System-level performance evaluation of reconfigurable processors}}},
  doi          = {{10.1016/j.micpro.2004.06.004}},
  volume       = {{29}},
  year         = {{2005}},
}

@inproceedings{39030,
  abstract     = {{StateCharts are well accepted for embedded systems
specification for various applications. However, for the
specification of complex systems they have several
limitations. In this article, we present a novel approach to
efficiently execute an UML 2.0 subset for embedded real-
time systems implementation with focus on hardware
interrupts, software exceptions, and timeouts. We
introduce a UML Virtual Machine, which directly
executes sequence diagrams, which are embedded into
hierarchically structured state transition diagrams.
Whereas state diagrams are directly executed as
Embedded State Machines (ESMs), sequence diagrams
are translated into UVM Bytecode. The final UVM
execution is performed by the interaction of the ESM and
the Bytecode Interpreter. Due to our completely model-
based approach, the UVM runtime kernel is easily
adaptable and scalable to different scheduling and
memory management strategies.}},
  author       = {{Schattkowsky, Tim and Müller, Wolfgang}},
  booktitle    = {{Proceedings of ISNG 05}},
  keywords     = {{UML, Executable Models, Hardware/Software Co-design, Virtual Machine, Embedded Systems}},
  title        = {{{A UML Virtual Machine for Embedded Systems}}},
  year         = {{2005}},
}

@inproceedings{2422,
  abstract     = {{Reconfigurable computing architectures aim to dynamically adapt their hardware to the application at hand. As research shows, the time it takes to reconfigure the hardware forms an overhead that can significantly impair the benefits of hardware customization. Multi-context devices are one promising approach to overcome the limitations posed by long reconfiguration times. In contrast to more traditional reconfigurable architectures, multi-context devices hold several configurations on-chip. On demand, the device can quickly switch to another context. In this paper we present a co-simulation environment to investigate design trade-offs for hybrid multi-context architectures. Our architectural model comprises a reconfigurable unit closely coupled to a CPU core. As a case study, we discuss the implementation of a FIR filter partitioned into several contexts. We outline the mapping process and present simulation results for single- and multi-context reconfigurable units coupled with both embedded and high-end CPUs.}},
  author       = {{Enzler, Rolf and Plessl, Christian and Platzner, Marco}},
  booktitle    = {{Proc. Int. Conf. on Engineering of Reconfigurable Systems and Algorithms (ERSA)}},
  isbn         = {{1-932415-05-X}},
  keywords     = {{Zippy, co-simulation}},
  pages        = {{174--180}},
  publisher    = {{CSREA Press}},
  title        = {{{Co-simulation of a Hybrid Multi-Context Architecture}}},
  year         = {{2003}},
}

@misc{2433,
  author       = {{Plessl, Christian and Maurer, Simon}},
  keywords     = {{co-design, speech processing}},
  publisher    = {{Computer Engineering and Networks Lab, ETH Zurich, Switzerland}},
  title        = {{{Hardware/Software Codesign in Speech Compression Applications}}},
  year         = {{2000}},
}

