@inproceedings{28517,
  abstract     = {{Functional gradation denotes a continuous distribution of properties over at least one spatial dimension of a component made of single material. This distribution is tailored with respect to the later intended application of the component. The improved material utilization enables light weight design and reduced resource consumption, thus offering an alternative for modern composite materials. To support the production planner in setting up the required manufacturing processes, this contribution proposes a multi-criteria decision-support approach that is based upon a framework for the computer-aided planning and optimisation of functionally graded components. The obtained ranking of possible process chains then allows the production planner to select the best alternative.}},
  author       = {{Rudtsch, Vinzent  and Gausemeier, J{\"u}rgen and Petersen, Marcus}},
  editor       = {{Dangelmaier, Wilhelm and Laroque, Christoph and Klaas, Alexander}},
  isbn         = {{978-3-942647-35-9}},
  pages        = {{469--480}},
  publisher    = {{Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn}},
  title        = {{{Multikriterielle Entscheidungsunterst{\"u}tzung f{\"u}r die Synthese von Herstellprozessen zur Fertigung funktional gradierter Bauteile}}},
  year         = {{2013}},
}

@inproceedings{28518,
  author       = {{Eckelt, Daniel and  Placzek,  Markus}},
  pages        = {{503--513}},
  publisher    = {{GITO-Verlag}},
  title        = {{{Mechanisms interdisciplinary {\ "a} r cooperation in product discovery - approaches {\" a} approaches for collaborative generation of ideas}}},
  year         = {{2013}},
}

@inproceedings{28520,
  author       = {{Rehage,  Gerald and  Bauer, Frank  and Gausemeier, J{\"u}rgen}},
  publisher    = {{Springer-Verlag Berlin Heidelberg}},
  title        = {{{Specification Technique for the Consistent Description of Manufacturing Operations and Resources}}},
  year         = {{2013}},
}

@inproceedings{28521,
  abstract     = {{In this contribution a methodology for a multi-criteria decision-support for manufacturing process chain selection in the context of functionally graded components is presented. The basis for this decision-support is provided by a framework for the computer-aided planning and optimisation of manufacturing process chains of functionally graded components, which is still under development. To distinguish between several alternative process chains it is necessary to consider those decision criteria that can not explicitly be specified within the CAD model. A matrix-supported algorithm guarantees a consistent weighting of these decision criteria while enabling a fine-granular rating scale. As a result, a ranking of the different process chains is achieved that constitutes the basis for the decision maker to select the favourite alternative.
}},
  author       = {{Petersen, Marcus  and Rudtsch, Vinzent  and Gausemeier, J{\"u}rgen}},
  editor       = {{Z{\"a}h, Michael}},
  isbn         = {{978-3-319020-53-2}},
  pages        = {{377--382}},
  publisher    = {{Springer Cham Heidelberg New York Dordrecht London}},
  title        = {{{Multi-Criteria Decision-Support for Manufacturing Process Chain Selection in the Context of Functionally Graded Components}}},
  year         = {{2013}},
}

@inproceedings{28522,
  author       = {{Tan,  Yin and Hassan, Bassem}},
  booktitle    = {{Proceedings of the ASME 2011 International Design Engineering Technical Conferences & Computers and Information in Engineering Conference (CIE)}},
  title        = {{{A Concept of Camera Test-Bench for Testing Camera Based Advanced Driver Assistance Syytems}}},
  year         = {{2013}},
}

@inproceedings{28523,
  author       = {{St{\"o}cklein, J{\"o}rg  and M{\"u}ller, Wolfgang and Baldin, Daniel and Xie,  Tao}},
  publisher    = {{ASME}},
  title        = {{{Virtual Test Environment for Self-Optimizing Systems}}},
  year         = {{2013}},
}

@article{28524,
  author       = {{Peter, Stefan and Eckelt,  Daniel  and Kliewe,  Daniel}},
  journal      = {{Mechanical engineering and metalworking Germany}},
  title        = {{{Successful action against product piracy}}},
  volume       = {{August 2013}},
  year         = {{2013}},
}

@inproceedings{28525,
  author       = {{Tan, Yin and Hassan, Bassem}},
  booktitle    = {{Proceedings of ISAM (IEEE International Symposium on Assembly and Task Planning)}},
  title        = {{{A Method for Testing Camera Based Advanced Driving Assistance Systems}}},
  year         = {{2013}},
}

@inproceedings{28526,
  author       = {{Hassan,  Bassem  and Berssenbr{\"u}gge,  Jan and Al Qaisi, Imad and St{\"o}cklein, J{\"o}rg}},
  booktitle    = {{Proceedings of ISAM (IEEE International Symposium on Assembly and Task Planning}},
  title        = {{{Reconfigurable Driving Simulator for Testing and Training of Advanced Driver Assistance Systems}}},
  year         = {{2013}},
}

@misc{28528,
  abstract     = {{Functional gradation denotes a continuous distribution of properties over the spatial dimensions of a component. These distributions are tailored with respect to later applications and require complex manufacturing processes. Therefore, a framework for the planning and optimization of manufacturing process chains for those components is presented. The framework is divided into three modules – the Component Description for the integration of graded properties into CAD models, the Expert System for the synthetization of alternative process chains and the Model-based Process Chain Optimization.
}},
  author       = {{Petersen, Marcus and Gausemeier, J{\"u}rgen}},
  publisher    = {{Vortrag}},
  title        = {{{A Framework for the Computer-Aided Planning and Optimization of Manufacturing Process Chains in the Context of Functionally Graded Components}}},
  year         = {{2013}},
}

@inproceedings{28529,
  abstract     = {{Mechatronics is the close interaction of mechanics, electronics, control engineering and software engineering. The increasing complexity of mechatronic systems results in a challenging development process and particularly requires a consistent comprehension of the tasks between all the engineers involved. Especially during the early design phases, the communication and cooperation between the mechanical, electrical, control and software engineers is necessary to establish a basis for efficient and effective product development. The approach of Model-Based Systems Engineering focuses on this aspect by means of an abstract but superordinate system model. It enables a holistic view of the system. The system model can be specified using the Systems Modeling Language (SysML). The language allows many degrees of freedom to specify a fact, bearing in mind that different system architects can specify the same fact in different ways. This leads to system models that can be interpreted in many ways. Thus, these models are hard to consistently compare and interpret, resulting in communication issues. In order to tackle this problem, we present a concept that uses modeling rules supporting model comparability. We formalize them by means of checks implemented in the programming language Java and the Object Constraint Language (OCL) in order to automatically verify the system model’s compliance with these rules.
}},
  author       = {{Kaiser, Lydia  and Dumitrescu, Roman and Holtmann, J{\"o}rg and Meyer, Matthias}},
  booktitle    = {{Proceedings of the ASME International Design Engineering Technical Conferences & Computers and Information in Engineering Conference}},
  publisher    = {{ASME}},
  title        = {{{Automatic Verification of Modeling Rules in Systems Engineering for Mechatronic Systems}}},
  year         = {{2013}},
}

@inproceedings{28532,
  author       = {{Berssenbr{\"u}gge, Jan and Bonner, Erik}},
  publisher    = {{ASME}},
  title        = {{{GPU-Based Local Tone Mapping in the Context of Virtual Night Driving}}},
  volume       = {{13(2)}},
  year         = {{2013}},
}

@inproceedings{28533,
  author       = {{Gausemeier, J{\"u}rgen and Peter, Stefan  and Wall,  Marina}},
  booktitle    = {{Proceedings of Rapid.Tech 2013}},
  title        = {{{Future-oriented Research Strategies for Additive Manufacturing}}},
  year         = {{2013}},
}

@inproceedings{28534,
  author       = {{Echterhoff, Niklas and Amshoff,  Benjamin and Gausemeier, J{\"u}rgen}},
  booktitle    = {{Proceedings of the International Conference on Innovation and Management and Technology (ICIMT)}},
  pages        = {{661--671}},
  title        = {{{Cross-Industry Innovations – Systematic Identification and Adaption}}},
  volume       = {{76}},
  year         = {{2013}},
}

@inproceedings{28537,
  author       = {{Bonner,  Erik and Berssenbr{\"u}gge, Jan}},
  pages        = {{19--34}},
  publisher    = {{Verlagsschriftenreihe des Heinz Nixdorf Instituts, Paderborn}},
  title        = {{{GPU-basiertes lokales Tone-Mapping f{\"u}r Nachtfahrsimulatoren}}},
  volume       = {{311}},
  year         = {{2013}},
}

@inproceedings{28538,
  author       = {{Echterhoff, Niklas and Amshoff, Benjamin and Gausemeier, J{\"u}rgen}},
  booktitle    = {{Proceedings of the 22nd International Conference on Management of Technology}},
  publisher    = {{IAMOT}},
  title        = {{{Systematic Identification of Cross-Industry Innovations using Bibliometrics}}},
  year         = {{2013}},
}

@inproceedings{28539,
  author       = {{Hassan, Bassem and Klaas, Alexander  and Wassmann, Helene and Grafe, Michael}},
  pages        = {{159--176}},
  publisher    = {{Heinz Nixdorf Institut, Universit{\"a}t Paderborn}},
  title        = {{{Kaskadierte Simulationen und Visualisierungen f{\"u}r die Analyse mechatronischer Systeme in umfangreichen Transportszenarien}}},
  volume       = {{311}},
  year         = {{2013}},
}

@inproceedings{28545,
  author       = {{Schmuedderich, Tanja and Tr{\"a}chtler, Ansgar  and Br{\"o}kelmann, Jan  and Gausemeier, J{\"u}rgen}},
  isbn         = {{978-3-642-30816}},
  pages        = {{23--32}},
  publisher    = {{Springer-Verlag}},
  title        = {{{Procedural Model for the Virtual Commissioining on the Basis of Model-based Design}}},
  year         = {{2013}},
}

@inproceedings{28548,
  author       = {{Gausemeier, J{\"u}rgen and Gaukstern, Tobias  and Tschirner,  Christian}},
  publisher    = {{Elsevier B.V.}},
  title        = {{{Systems Engineering Management Based on a Discipline-Spanning System Model}}},
  year         = {{2013}},
}

@inproceedings{28549,
  author       = {{Bauer, Frank  and Gausemeier, J{\"u}rgen and K{\"o}chling, Daniel and Oesters{\"o}tebier, Felix}},
  publisher    = {{Springer Berlin/Heidelberg}},
  title        = {{{Approach for an Early Validation of Mechatronic Systems using Idealized Simulation Models within the Conceptual Design}}},
  year         = {{2013}},
}

