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Configure and Parameters’ Optimization for Sheet Metal Flexible Manufacturing System Based on Simulation

机译:基于仿真的钣金柔性制造系统配置和参数优化

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摘要

Sheet metal machining is a special area in manufacturing industry. The flexible manufacturing system (FMS) has been used in the fabrication of sheet metal products in order to achieve high flexibility and high production efficiency. The configure and parameters are key factors for the performance optimization of the FMS. In this paper the discrete event system simulation is used to evaluate the configure and parameters, and to optimize the performance of the FMS. The composition and characteristics of sheet metal FMS are introduced briefly, the evaluation criteria for FMS’ performance and the maximal service capability that the piler can provide to the machining cells are given out. Some simulation schemes are constructed to evaluate whether the configure and parameters are reasonable, and whether the piler has sufficient serviceability. Some instructive conclusions have been reached from the simulation: (1) The parameters of the piler have great effect on the FMS’s performance. (2) As the production process of sheet metal are comparatively simple and fixed, the scheduling rules have minor influence on the FMS’s performance. (3) On given parameters, a piler can provide sufficient service for four punchshear machining cells.
机译:钣金加工是制造业的特殊区域。柔性制造系统(FMS)已用于金属板制造中,以实现高柔韧性和高生产效率。配置和参数是FMS性能优化的关键因素。在本文中,离散事件系统仿真用于评估配置和参数,并优化FMS的性能。简要介绍了金属板FMS的组成和特性,给出了FMS性能的评估标准和最大服务能力,使得Pirer可以提供给加工电池的最大服务能力。构建一些模拟方案以评估配置和参数是否合理,并且预示器是否具有足够的可维护性。已经从模拟中达到了一些有义的结论:(1)Pirer参数对FMS的性能有很大影响。 (2)由于金属板的生产过程相对简单和固定,调度规则对FMS的性能进行了轻微影响。 (3)在给定参数上,一个Pirer可以为四个打孔机加工电池提供足够的服务。

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