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Performance Evaluation of Bidding-Based Multi-Agent Scheduling Algorithms for Manufacturing Systems

机译:制造系统中基于投标的多Agent调度算法的性能评估

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Artificial Intelligence techniques have being applied to many problems in manufacturing systems in recent years. In the specific field of manufacturing scheduling many studies have been published trying to cope with the complexity of the manufacturing environment. One of the most utilized approaches is (multi) agent-based scheduling. Nevertheless, despite the large list of studies reported in this field, there is no resource or scientific study on the performance measure of this type of approach under very common and critical execution situations. This paper focuses on multi-agent systems (MAS) based algorithms for task allocation, particularly in manufacturing applications. The goal is to provide a mechanism to measure the performance of agent-based scheduling approaches for manufacturing systems under key critical situations such as: dynamic environment, rescheduling, and priority change. With this mechanism it will be possible to simulate critical situations and to stress the system in order to measure the performance of a given agent-based scheduling method. The proposed mechanism is a pioneering approach for performance evaluation of bidding-based MAS approaches for manufacturing scheduling. The proposed method and evaluation methodology can be used to run tests in different manufacturing floors since it is independent of the workshop configuration. Moreover, the evaluation results presented in this paper show the key factors and scenarios that most affect the market-like MAS approaches for manufacturing scheduling.
机译:近年来,人工智能技术已应用于制造系统中的许多问题。在制造调度的特定领域中,已经发表了许多研究来应对制造环境的复杂性。利用率最高的方法之一是基于(多)代理程序的调度。尽管如此,尽管在该领域进行了大量的研究,但是在非常常见和关键的执行情况下,没有关于这种方法的性能度量的资源或科学研究。本文重点介绍基于多代理系统(MAS)的任务分配算法,尤其是在制造应用程序中。目标是提供一种机制,用于在关键的关键情况下(例如:动态环境,重新计划和优先级更改)测量制造系统的基于代理的计划方法的性能。通过这种机制,将有可能模拟紧急情况并给系统施加压力,以测量给定的基于代理的计划方法的性能。所提出的机制是用于基于投标的制造计划的MAS方法性能评估的开创性方法。所提出的方法和评估方法可独立于车间配置而用于在不同的生产车间进行测试。此外,本文给出的评估结果显示了最可能影响类似于市场的MAS制造调度方法的关键因素和方案。

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