@inproceedings{28189,
  abstract     = {{Innovative products are based on an interdisciplinary interaction between mechanics, electronics and information technology. The close interplay of the specialist disciplines makes special demands on the development process. For example, a uniform understanding of the specialists is particularly important for an efficient development of the product and the associated production system. Furthermore, the product concept often already determines the production system, even though new production technologies make innovative products possible in the first place. Therefore, the interactions between the product and the production system must be taken into account from the start during development. Currently, the development is mostly carried out separately in the specialist disciplines on the basis of existing methods and systematics, who often do not fully consider the existing interactions. Time-consuming and costly iteration loops are the result. This article therefore addresses the interactions and mutual dependencies between the product and the production system in the early phases of product development, such as an adaptation of the product design due to assembly requirements. The development process of a flashlight serves as an example. First, the interactions are described and analyzed. A methodology is then presented that takes these interactions into account in the context of the integrative development of product and production system in the early phases of product development. The methodology consists of a process model, a specification technique and a software tool. The process model serves as a guideline for the integrative development of product and production system, whereas the specification technology forms the core of the methodology and enables interdisciplinary collaboration of all people involved. For the product concept, the specification technology encompasses the aspects of the environment, application scenarios, requirements, functions, effective structure, behavior and design. The principle solution of the production system is represented by the aspects of production requirements, process sequence, resources and design. The software tool supports the developer in applying the methodology. The methodology presented is then demonstrated using the example product. whereas the specification technology forms the core of the methodology and enables interdisciplinary collaboration of all people involved. For the product concept, the specification technology encompasses the aspects of the environment, application scenarios, requirements, functions, effective structure, behavior and design. The principle solution of the production system is represented by the aspects of production requirements, process sequence, resources and design. The software tool supports the developer in applying the methodology. The methodology presented is then demonstrated using the example product. whereas the specification technology forms the core of the methodology and enables interdisciplinary collaboration of all people involved. For the product concept, the specification technology encompasses the aspects of the environment, application scenarios, requirements, functions, effective structure, behavior and design. The principle solution of the production system is represented by the aspects of production requirements, process sequence, resources and design. The software tool supports the developer in applying the methodology. The methodology presented is then demonstrated using the example product. Active structure, behavior and shape. The principle solution of the production system is represented by the aspects of production requirements, process sequence, resources and design. The software tool supports the developer in applying the methodology. The methodology presented is then demonstrated using the example product. Active structure, behavior and shape. The principle solution of the production system is represented by the aspects of production requirements, process sequence, resources and design. The software tool supports the developer in applying the methodology. The methodology presented is then demonstrated using the example product.}},
  author       = {{Petersen, Marcus and  Bandak, Shatha and Gausemeier,  Jürgen  and Iwanek,  Peter and Schneider, Marcel}},
  editor       = {{Schenk, Michael}},
  issn         = {{2196-7598}},
  pages        = {{13--21}},
  publisher    = {{Fraunhofer IFF}},
  title        = {{{Methodology for reporting Interactions between product and production system in the early phases of product development - a practical example}}},
  year         = {{2014}},
}

@inproceedings{28293,
  abstract     = {{Functional gradation means a tailored distribution of properties over the spatial dimensions of a component based on a complex manufacturing process chain. The synthetisation of these processes requires a framework that generates numerous information for the production system elaboration during the further design phases. Therefore a production system specification technique for functionally graded components is presented. The specification technique enables the visualisation of the resulting process chain with all information in a descriptive manner and offers an interface for Microsoft Visio.}},
  author       = {{Petersen,  Marcus and Bauer, Frank and Hess, Stefan and Gausemeier,  Jürgen and Gräßler,  Iris}},
  booktitle    = {{Proceedings of the DESIGN 2014 - 13th International DESIGN Conference }},
  issn         = {{1847-9073}},
  pages        = {{1157--1166}},
  publisher    = {{Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb / The Design Society, Glasgow}},
  title        = {{{Towards a Production System Specification Technique for Functionally Graded Components}}},
  volume       = {{2}},
  year         = {{2014}},
}

@inproceedings{64453,
  author       = {{Jaedicke, Volker and Agcaer, Semih and Gerhardt, Nils Christopher and Hofmann, Martin and Robles, Francisco E. and Steinert, Marian and Jones, David and Goebel, Sebastian and Welp, Hubert}},
  booktitle    = {{Biomedical applications of light scattering VIII}},
  pages        = {{1 -- 10}},
  title        = {{{Performance comparison of different metrics for spectroscopic optical coherence tomography}}},
  doi          = {{10.1117/12.2038891}},
  year         = {{2014}},
}

@inproceedings{64451,
  author       = {{Koukourakis, Nektarios and Finkeldey, Markus and Gerhardt, Nils Christopher and Hofmann, Martin and Stürmer, Moritz and Wallrabe, Ulrike and Czarske, Jürgen and Fischer, Andreas}},
  booktitle    = {{Optical micro- and nanometrology V}},
  title        = {{{Effects of axial scanning in confocal microscopy employing adaptive lenses (CAL)}}},
  doi          = {{10.1117/12.2052152}},
  year         = {{2014}},
}

@article{64448,
  author       = {{Koukourakis, Nektarios and Finkeldey, Markus and Gerhardt, Nils Christopher and Hofmann, Martin R. and Fischer, Andreas and Stürmer, Moritz and Leithold, Christoph and Wallrabe, Ulrike and Czarske, Jürgen W.}},
  journal      = {{Optics express}},
  number       = {{5}},
  pages        = {{6025 -- 6039}},
  title        = {{{Axial scanning in confocal microscopy employing adaptive lenses (CAL)}}},
  doi          = {{10.1364/oe.22.006025}},
  volume       = {{22}},
  year         = {{2014}},
}

@article{64450,
  author       = {{Höpfner, Henning and Lindemann, Markus and Gerhardt, Nils Christopher and Hofmann, Martin}},
  journal      = {{Applied physics letters}},
  number       = {{2}},
  pages        = {{1 -- 5}},
  title        = {{{Controlled switching of ultrafast circular polarization oscillations in spin-polarized vertical-cavity surface-emitting lasers}}},
  doi          = {{10.1063/1.4862330}},
  volume       = {{104}},
  year         = {{2014}},
}

@article{64452,
  author       = {{Koukourakis, Nektarios and Gerhardt, Nils Christopher and Hofmann, Martin R. and Jädicke, Volker and Göbel, Sebastian and Welp, Hubert}},
  journal      = {{Optics letters}},
  number       = {{14}},
  pages        = {{4160 -- 4163}},
  title        = {{{Multiwavelength phase unwrapping and aberration correction using depth filtered digital holography}}},
  doi          = {{10.1364/ol.39.004160}},
  volume       = {{39}},
  year         = {{2014}},
}

@inproceedings{64449,
  author       = {{Höpfner, Henning and Lindemann, Markus and Gerhardt, Nils Christopher and Hofmann, Martin}},
  booktitle    = {{Vertical-cavity surface-emitting lasers XVIII}},
  pages        = {{9001--15}},
  title        = {{{Coherent switching of polarization oscillations in vertical-cavity surface-emitting lasers}}},
  doi          = {{10.1117/12.2039196}},
  year         = {{2014}},
}

@inproceedings{64447,
  author       = {{Höpfner, Henning and Lindemann, Markus and Gerhardt, Nils Christopher and Hofmann, Martin R.}},
  booktitle    = {{Semiconductor lasers and laser dynamics VI}},
  pages        = {{1 -- 6}},
  title        = {{{Spin-controlled ultrafast vertical-cavity surface-emitting lasers}}},
  doi          = {{10.1117/12.2049684}},
  year         = {{2014}},
}

@inproceedings{64445,
  author       = {{Gerhardt, Nils Christopher and Höpfner, Henning and Lindemann, Markus and Hofmann, Martin R.}},
  booktitle    = {{Spintronics VII}},
  pages        = {{1 -- 10}},
  title        = {{{Polarization dynamics in spin-polarized vertical-cavity surface-emitting lasers}}},
  doi          = {{10.1117/12.2063723}},
  year         = {{2014}},
}

@article{64446,
  author       = {{Koukourakis, Nektarios and Finkeldey, Markus and Gerhardt, Nils Christopher and Hofmann, Martin and Stürmer, M. and Leithold, C. and Wallrabe, U. and Czarske, J.W.}},
  journal      = {{International C for Optics. Congress }},
  title        = {{{Employing electrically tunable lenses in confocal microscopy for axial scanning}}},
  year         = {{2014}},
}

@unpublished{64739,
  author       = {{Dahmen, Rafael and Glöckner, Helge and Schmeding, Alexander}},
  title        = {{{Complexifications of infinite-dimensional manifolds and new constructions of infinite-dimensional Lie groups}}},
  year         = {{2014}},
}

@inbook{64751,
  author       = {{Schmeding, Alexander}},
  booktitle    = {{Geometric methods in physics. XXXII workshop, Białowie\.za, Poland, June 30 – July 6, 2013. Selected papers}},
  isbn         = {{978-3-319-06247-1; 978-3-319-06248-8}},
  keywords     = {{58D05, 22E65, 46T05, 57R18}},
  pages        = {{153–162}},
  publisher    = {{Cham: Birkhäuser/Springer}},
  title        = {{{Orbifold diffeomorphism groups}}},
  doi          = {{10.1007/978-3-319-06248-8_13}},
  year         = {{2014}},
}

@phdthesis{64753,
  author       = {{Walter, Boris}},
  title        = {{{Weighted diffeomorphism groups of Banach spaces and non-compact manifolds and weighted mapping groups}}},
  year         = {{2014}},
}

@unpublished{64758,
  author       = {{Eyni, Jan Milan}},
  title        = {{{Universal continuous bilinear forms for compactly supported sections of Lie algebra bundles and universal continuous extensions of certain current algebras}}},
  year         = {{2014}},
}

@unpublished{64759,
  author       = {{Eyni, Jan Milan}},
  title        = {{{The Frobenius theorem for Banach distributions on infinite-dimensional manifolds and applications in infinite-dimensional Lie theory}}},
  year         = {{2014}},
}

@unpublished{64755,
  author       = {{Walter, Boris}},
  keywords     = {{46E10, 46T20, 26E15, 26E20}},
  title        = {{{Differentiable mappings between weighted restricted products}}},
  year         = {{2014}},
}

@unpublished{64760,
  author       = {{Eyni, Jan Milan}},
  title        = {{{Universal central extensions for groups of sections on non-compact manifolds}}},
  year         = {{2014}},
}

@article{64667,
  author       = {{Birth, Lidia and Glöckner, Helge}},
  issn         = {{0008-414X}},
  journal      = {{Canadian Journal of Mathematics}},
  keywords     = {{22E30, 46F05, 22D15, 42A85, 43A10, 43A15, 46A03, 46A13, 46E25}},
  number       = {{1}},
  pages        = {{102–140}},
  title        = {{{Continuity of convolution of test functions on Lie groups}}},
  doi          = {{10.4153/CJM-2012-035-6}},
  volume       = {{66}},
  year         = {{2014}},
}

@article{64666,
  author       = {{Glöckner, Helge and Lucht, Lutz G.}},
  issn         = {{0002-9947}},
  journal      = {{Transactions of the American Mathematical Society}},
  keywords     = {{11M41, 30B50, 30J99, 46H99}},
  number       = {{6}},
  pages        = {{3275–3293}},
  title        = {{{Weighted inversion of general Dirichlet series}}},
  doi          = {{10.1090/S0002-9947-2013-06018-7}},
  volume       = {{366}},
  year         = {{2014}},
}

