New Heuristic for Setup Plan Generation and Multi Tool Modules Selection in Reconfigurable Manufacturing Systems

Muhammad Ameer, M. Dahane
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引用次数: 3

Abstract

Reconfigurable manufacturing systems (RMS) are designed to overcome the deficiencies of other conventional manufacturing systems in terms of sudden change in market demand or product customization. Setup planning in conventional manufacturing systems is performed based on machining capabilities of the system. When the setup planning of new part is carried out with in the same system, changes are made in the existing system. Sometimes these modifications may not be economically feasible and lead to the reduction of system efficiency. In RMS, the Reconfigurable Machine Tools (RMTs) are capable of reconfiguration, in terms of functionality and capabilities, to cope with the future changes in the system. While the concept of enriched features gives us enough data by which we can plan for the part with its part specification data, without considering the system’s resources or capabilities. This work addresses the problem of setup planning for a part on machine in a reconfigurable environment. A mathematical model is developed, to achieve the objective of cost minimization, for setup planning by considering the cost attributes of operation processing, tolerance stack-up, setup change and tool module change costs. A new heuristic is developed for setup planning. In its first step, it generates set of operations/setups based on ranking and priority. In the second step, RMTs and tool modules are selected for performing the given operations of each setup in the setup plan. To check the efficiency of proposed approach, it is tested on the part example and results are discussed with proposed future work.
可重构制造系统中设置计划生成和多工具模块选择的新启发式方法
可重构制造系统(RMS)旨在克服其他传统制造系统在市场需求的突然变化或产品定制方面的不足。传统制造系统的设置计划是根据系统的加工能力来执行的。当在同一系统中进行新零件的设定计划时,对现有系统进行更改。有时,这些修改可能在经济上不可行,并导致系统效率降低。在RMS中,可重构机床(rmt)能够在功能和能力方面进行重新配置,以应对系统中未来的变化。而丰富特征的概念为我们提供了足够的数据,通过这些数据,我们可以用零件规格数据来规划零件,而无需考虑系统的资源或能力。这项工作解决了在可重构环境下机器上零件的安装规划问题。为实现成本最小化的目标,建立了考虑加工成本、公差叠加成本、安装变更成本和刀具模块变更成本的安装规划数学模型。提出了一种新的启发式求解装置规划的方法。在第一步中,它根据排名和优先级生成一组操作/设置。在第二步中,选择rmt和工具模块来执行设置计划中每个设置的给定操作。为了验证所提方法的有效性,在零件实例上进行了测试,并对结果进行了讨论,提出了今后的工作建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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