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Configuration Selection for Reconfigurable Manufacturing Systems by Means of Characteristic State Space 被引量:2

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摘要 The configuration selection for reconfigurable manufacturing systems(RMS) have been tackled in a number of studies by using analytical or simulation models. The simulation models are usually based on fewer assumptions than the analytical models and therefore are more wildly used in modeling complex RMS. But in the absence of an efficient gradient analysis method of the objective function, it is time-consuming in solving large-scale problems by using a simulation model coupled with a meta-heuristics algorithm. In this paper, a new approach by means of characteristic state space is presented to improve the efficiency of the configuration selection for an RMS. First, a characteristic state equation is set up to represent the input and the output resources of each basic activity in an RMS. A production process model in terms of matrix equations is established by iterating the equations of basic activities according to the resource flows. This model introduces the production process into a characteristic state space for further analysis. Second, the properties of the characteristic state space are presented. On the basis of these properties, the configuration selection in an RMS is considered as a path-planning problem, and the gradient of the objective function is computed. Modified simulated annealing(SA) is also presented, in which neighborhood generation is guided by the gradient to accelerate convergence and reduce the run time of the optimization procedure. Finally, several case studies on the configuration selection for some actual reconfigurable assembly job-shops are presented and compared to the classical SA. The comparison shows relatively positive results. This study provides a more efficient configuration selection approach by using the gradient of the objective function and presents the relevant theories on which it is based. The configuration selection for reconfigurable manufacturing systems(RMS) have been tackled in a number of studies by using analytical or simulation models. The simulation models are usually based on fewer assumptions than the analytical models and therefore are more wildly used in modeling complex RMS. But in the absence of an efficient gradient analysis method of the objective function, it is time-consuming in solving large-scale problems by using a simulation model coupled with a meta-heuristics algorithm. In this paper, a new approach by means of characteristic state space is presented to improve the efficiency of the configuration selection for an RMS. First, a characteristic state equation is set up to represent the input and the output resources of each basic activity in an RMS. A production process model in terms of matrix equations is established by iterating the equations of basic activities according to the resource flows. This model introduces the production process into a characteristic state space for further analysis. Second, the properties of the characteristic state space are presented. On the basis of these properties, the configuration selection in an RMS is considered as a path-planning problem, and the gradient of the objective function is computed. Modified simulated annealing(SA) is also presented, in which neighborhood generation is guided by the gradient to accelerate convergence and reduce the run time of the optimization procedure. Finally, several case studies on the configuration selection for some actual reconfigurable assembly job-shops are presented and compared to the classical SA. The comparison shows relatively positive results. This study provides a more efficient configuration selection approach by using the gradient of the objective function and presents the relevant theories on which it is based.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第1期23-32,共10页 中国机械工程学报(英文版)
基金 supported by National High-tech Research and Development Program of China(863Program,Grant No.2006AA04Z101) Dalian Municipal Science and Technology Program of China(Grant No.2008J31JH011)
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  • 1谢楠,李爱平,徐立云.基于广义随机Petri网的可重组制造单元建模与分析方法[J].计算机集成制造系统,2006,12(6):828-834. 被引量:13
  • 2许虹 唐任仲 程耀东.基于合弄制造原理的制造设备可重构技术[A]..第4届国际设计与制造前沿会议(ICFDM 2000)[C].中国杭州,2000-06.17-19.
  • 3Koren Y, Heisel U, Jovane F, et al. Reconfigurable manufacturing systems. Annals of the CIRP, 1999, 48(2):527-540.
  • 4Son Sung-yong. Design principles and methodologies for reconfigurable machining systems: [PhD Dissertation].Michigan: University of Michigan, 2000.
  • 5Mehrabi M G, Ulsoy A G, Koren Y. Reconfigurable manufacturing systems: Key to future manufacturing. Journal of Intelligent Manufacturing, 2000(11): 403-419.
  • 6Mehrabi M G, Ulsoy A G, Koren Y. Reconfigurable manufacturing systems and their enabling technologies. Int. J.Manufacturing Technology and Management, 2000, 1 (1):113-130.
  • 7Landers R G, Min B K, Koren Y. Reconfigurable machine tools. Annals of the CIRP, 2001, 50(1): 269-274.
  • 8Kuo Chung-Hsien. Resource allocation and performance evaluation of the reconfigurable manufacturing systems. In:2001 IEEE International Conference on Systems, Man, and Cybernetics (SMC 2001), vol.4, e-Systems and e-man for Cybernetics in Cyberspace, October 7-10, 2001, Tucson,Arizona, USA, 2001, 4: 2451-2456.
  • 9张根保.自动化制造系统[M].北京:机械工业出版社,2002..
  • 10杜端甫.运筹图论[M].北京:航空航天大学出版社,1990..

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