柔性制造系统控制与调度的有限自动机分解

H. Darabi, Mohsen A. Jafari, S. S. Manapure
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引用次数: 3

摘要

尽管在资源约束下柔性制造系统(fms)的调度和控制方面做了很多努力,但目前的调度技术面临着两个主要缺点:建模和复杂性。建模是将FMS数据转换为一组信息的任务,准备由调度算法进行处理。复杂度与在建模阶段生成的信息集上成功执行调度算法所需的工作量有直接关系。本文利用有限自动机理论,提出了一种具有资源约束的FMS控制与调度的建模形式及其相应的调度算法。而基于fa的建模是完全自动化的,不需要任何人为设计人员的干预,其相关算法是有效的和高效的。我们使用IDEF3标准来捕获FMS活动和资源数据。我们建议分三步走。在第一步中,将IDEF3数据集转换为有限自动机,保留活动优先级关系。第二步,将得到的有限自动机分解为更小的调度问题,这些问题可以独立优化。第三步,采用启发式调度算法分别处理每个问题。我们把开发的程序应用于100个问题。结果是令人满意的和有希望的。
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Finite automata decomposition for flexible manufacturing systems control and scheduling
Despite the efforts in scheduling and control of flexible manufacturing systems (FMSs) with resource constraints, the current pool of scheduling techniques faces two major drawbacks: modeling and complexity. Modeling is the task of converting the FMS data to a set of information, ready to be processed by a scheduling algorithm. Complexity has a direct relation with the amount of effort required to execute a scheduling algorithm successfully on the information set generated in the modeling phase. In this paper, we use finite automata (FA) theory to develop a modeling formalism and its accompanying scheduling algorithm for control and scheduling of FMS with resource constraints. While the FA-based modeling is completely automatic and does not need any human-designer interference, its related algorithm is both effective and efficient. We use IDEF3 standard to capture the FMS activities and resource data. We propose a three-step procedure. In the first step, the IDEF3 data set is converted to a finite automaton, preserving the activity precedence relationships. In the second step, the resulted finite automaton is decomposed to smaller (in size) scheduling problems that can be independently optimized. In the third step, a heuristic scheduling algorithm is used to handle each problem separately. We applied the developed procedure to 100 problems. The results are satisfactory and promising.
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1
审稿时长
3 months
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