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Mathematical programming approach to optimize material flow in an AGV-based flexible jobshop manufacturing system with performance analysis

机译:数学编程方法,通过性能分析优化基于AGV的柔性Jobshop制造系统中的物料流

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摘要

An automated manufacturing system (AMS) is a complex network of processing, inspecting, and buffering nodes connected by system of transportation mechanisms. For an AMS, it is desirable to be capable to increase or decrease the output with the rise and fall of demand. Such specifications show the complexity of decision making in the field of AMSs and the need for concise and accurate modeling methods. Therefore, in this paper, a flexible jobshop automated manufacturing system is proposed to optimize the material flow. The flexibility is on the multi-shops of the same type and also multiple products that can be produced. An automated guided vehicle is applied for material handling. The objective is to optimize the material flow regarding the demand fluctuations and machine specifications. An illustrative example is presented to test the validity of the proposed mathematical model.
机译:自动化制造系统(AMS)是由运输机制系统连接的,处理,检查和缓冲节点的复杂网络。对于AMS,希望能够随着需求的上升和下降而增加或减少输出。这样的规范显示了AMS领域决策的复杂性,以及对简洁,准确的建模方法的需求。因此,本文提出了一种灵活的车间自动化生产系统,以优化物料流。灵活性在于相同类型的多个商店以及可以生产的多种产品上。应用自动引导车辆进行物料搬运。目的是针对需求波动和机器规格优化物料流。给出了一个说明性示例,以测试提出的数学模型的有效性。

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