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Titlebook: Dynamics in Logistics; Proceedings of the 5 Michael Freitag,Herbert Kotzab,Jürgen Pannek Conference proceedings 2017 Springer International

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书目名称Dynamics in Logistics
副标题Proceedings of the 5
编辑Michael Freitag,Herbert Kotzab,Jürgen Pannek
视频video
概述Includes supplementary material:
丛书名称Lecture Notes in Logistics
图书封面Titlebook: Dynamics in Logistics; Proceedings of the 5 Michael Freitag,Herbert Kotzab,Jürgen Pannek Conference proceedings 2017 Springer International
描述These proceedings contain research papers presented at the 5th International Conference on Dynamics in Logistics, held in Bremen, Germany, February 2016. The conference is concerned with dynamic aspects of logistic processes and networks. The spectrum of topics reaches from modeling, planning and control of processes over supply chain management and maritime logistics to innovative technologies and robotic applications for cyber-physical production and logistic systems. The growing dynamic confronts the area of logistics with completely new challenges: it must become possible to describe, identify and analyze the process changes. Moreover, logistic processes and networks must be redevised to be rapidly and flexibly adaptable to continuously changing conditions. The book primarily addresses researchers and practitioners from the field of industrial engineering and logistics, but it may also be beneficial for graduate students.
出版日期Conference proceedings 2017
关键词Robust and dynamic systems and simulations; Collaborative planning and control; Distributed planning a
版次1
doihttps://doi.org/10.1007/978-3-319-45117-6
isbn_softcover978-3-319-83214-2
isbn_ebook978-3-319-45117-6Series ISSN 2194-8917 Series E-ISSN 2194-8925
issn_series 2194-8917
copyrightSpringer International Publishing Switzerland 2017
The information of publication is updating

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Michael Freitag,Herbert Kotzab,Jürgen PannekIncludes supplementary material:
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Australiag autonomously. These systems have reached a level of complexity that opens up new application areas, but at the same time strains the existing design flows in system development. To ameliorate this problem, we propose a novel design flow for cyber-physical systems by adapting model-based specificat
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Austriaw to determine the route and travel schedule of each flat car (FC). It is assumed that a flat car may have to reserve multiple resources simultaneously at a moment during its travel. Example of the resources are transfer points (TPs) and intersections (ISs) on guide-path network. A travel-scheduling
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Bolivia environment. The paper defines the collaboration grading of human–robot co-working environment based on the prevailing safety concepts in workspace sharing. Detailed requirements are generated for each interaction mode and few collaboration indices are established. Different indices are found to be
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