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首页> 外文期刊>Journal of The institution of engineers (India), Series C >A Systematic Approach for Optimum Configuration Selection in Reconfigurable Manufacturing System
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A Systematic Approach for Optimum Configuration Selection in Reconfigurable Manufacturing System

机译:可重构制造系统中最佳配置选择的系统方法

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摘要

Reconfigurable manufacturing systems (RMS) are considered as next generation manufacturing systems that are capable of providing the functionality and capacity as and when required. Products are classified into several part families as per customer requirement and each of them are a set of similar products. In a shop floor, the manufacturers have to deal with varied number of orders for multiple part families and after completing the orders of a particular family, they need to change over to the orders of a different part family. Shifting from one part family to another may require the system’s reconfiguration, which is a complicated method and requires tremendous cost and efforts. The complexity, effort and cost from changing one configuration to another depends on the existing initial configuration and the new configuration required for subsequent production of orders belonging to a different part family. This paper focuses on determining optimal configuration of an RMS required for different part family on the basis of minimum loss occurred for a given system configuration. The proposed methodology is explained and an example is given for illustration.
机译:可重新配置的制造系统(RMS)被认为是能够提供所需功能和能力的下一代制造系统。根据客户要求,产品分为几个零件家族,每个部分都是一组类似产品。在一个商店地板中,制造商必须处理多个部门家庭的各种订单,并在完成特定家庭的订单后,他们需要改变到不同部分家庭的订单。从一个部件家庭转移到另一个部件可能需要系统的重新配置,这是一种复杂的方法,需要巨大的成本和努力。从改变一种配置到另一个配置的复杂性,努力和成本取决于现有的初始配置和后续生产属于不同部分系列的订单所需的新配置。本文侧重于确定不同零件家族基于对给定系统配置的最小损耗所需的RMS所需的最佳配置。解释了所提出的方法,并给出了例子的示例。

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