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9th IFAC Workshop on Intelligent Manufacturing Systems (2008)
Intelligent Manufacturing Systems, Volume# 9 | Part# 1
Location: Szczecin University of Technology, Poland
National Organizing Committee Chair: Zaikin, Oleg; Korytkowski, Przemyslaw; Maslowski, Andrzej
International Program Committee Chair: Pereira, Carlos Eduardo; Banaszak, Zbigniew A.; Matuszek, Matuszek
Conference Editor: Pereira, Carlos Eduardo; Zaikin, Oleg; Banaszak, Zbigniew A.
ISBN: 978-3-902661-40-1
Start Date: 2008-10-09
End Date: 2008-10-10
| Paper Title | Authors | Updated | |
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| Machine-part grouping and cluster analysis | Owsinski, Jan W. | 2008-10-09 |
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Authors: Owsinski, Jan W.
Abstract: The machine-part grouping problem is considered, equivalent to partitioning the set of machines and operations, corresponding to block diagonalisation with constraints. The attempts to solve the problem through clustering are outlined. The difficulties are presented, linked with (i) ambiguity of formulation; (ii) selection of criteria; and (iii) lack of effective algorithms. A unified survey of criteria is provided. The return is proposed to basic clustering scheme, providing simple and fast algorithms, which may not yield optimal solutions, but can be easily controlled and their solutions improved.
Keywords: group technology,cell formation,machine-part grouping,cluster analysis,agglomerative clustering,distance definitions
Digital Object Identifier (DOI): 10.3182/20081205-2-CL-4009.00052
Conference: 9th IFAC Workshop on Intelligent Manufacturing Systems (2008)
Location: Szczecin University of Technology, Poland
Start Date: Thu Oct 09 2008 - End Date: Fri Oct 10 2008
Page Numbers: 296-301
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| Integrated approach for design of machining systems | Dolgui, A.; Guschinsky, N.; Levin, G. | 2008-10-09 |
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Authors: Dolgui, A.; Guschinsky, N.; Levin, G.
Abstract: In this paper we present the prototype of a decision support system for logical layout design of machining systems. The approach and developed decision support system are focused on systems which are used in the mass production of a unique product or a family of similar products. In these lines, the machining operations are realized on working positions equipped by standard modular spindle heads. The part transportation from a working position to the next one is synchronized. The spindle heads selected and their layout define the system productivity and the final cost. The paper present a novel approach and depicts mathematical and decision-aid methods developed and implemented in the software tool for optimization of each design (or reconfiguration) stage of such a line, in particular, a method for finding the optimal logical layout.
Keywords:
Digital Object Identifier (DOI): 10.3182/20081205-2-CL-4009.00053
Conference: 9th IFAC Workshop on Intelligent Manufacturing Systems (2008)
Location: Szczecin University of Technology, Poland
Start Date: Thu Oct 09 2008 - End Date: Fri Oct 10 2008
Page Numbers: 302-307
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