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DESIGN OF RECONFIGURABLE MANUFACTURING SYSTEMS WITH STRONGLY COUPLED NATURE


Today's manufacturing environment forces manufacturing companies to make as many product variations as possible at affordable costs within a short time. Mass customisation is one of most important technologies for companies to achieve their objectives. Efforts to mass customisation should be made on two aspects: (ⅰ) to modularize products and make them as less differences as possible; (ⅱ) to design manufacturing resources and make them provide as many processes variations as possible. This paper reports our recent work on aspect (ⅱ), i.e., how to design a Reconfigurable Manufacturing System (RMS) so that it can be competent to accomplish various processes optimally; Reconfigurable Robot System (RRS) is taken as an example. RMS design involves architecture design and configuration design, and configuration design is further divided in design analysis and design synthesis. Axiomatic Design Theory (ADT) is applied to architecture design, the features and issues of RRS configuration design are discussed, automatic modelling method is developed for design analysis, and concurrent design methodology is presented for design synthesis.......

【作者名称】: Zhuming Bi, Sherman Y. T. Lang, Lihui Wang
【作者单位】: National Research Council Canada, Integrated Manufacturing Technologies Institute, Canada
【关 键 词】: mass customisation, reconfigurable manufacturing systems, reconfigurable robotic system, analysis, synthesis, architecture
【会议名称】: International Conference on Frontiers of Design and Manufacturing(ICFDM'2006) vol.3; 20060619-22; Guangzhou(CN)
【期刊论文数据库】: [DBS_Articles_01]
【期刊论文编号】: 101,087,008
【摘要长度】: 1,145
【会议地点】: Guangzhou(CN)
【会议组织】: National Research Council Canada, Integrated Manufacturing Technologies Institute, Canada
【会议时间】: 2006
【上篇论文】: 外文会议 - Comparison between a large bandwidth LQG and modal control methods applied to complex flexible structure
【下篇论文】: 外文会议 - Application of neural networks to predictive modelling of the separation process by pervaporation

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