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Efficient computation of coordinating controls in hierarchical structures for failure-prone multicell flexible assembly systems

机译:易于失效的多单元柔性装配系统的分层结构中的协调控件的高效计算

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Production allocation in multicell manufacturing systems is considered. A model is developed for a hierarchical control scheme, where each cell consists of several failure-prone machines for which the time scale of the machine state transitions is comparable to the processing times. The production objective is to track a nonstationary demand as closely as possible when the demand is near or exceeds the capacity of the system. A series of approximations is proposed to obtain a model that is realistic while admitting a tractable solution. To solve the resulting stochastic control problem, a general result is derived on the second-order finite-time (transient) statistics of a continuous-time Markov chain. Simulation results are presented to illustrate the proposed model and control methodology. These results are compared with a myopic linear programming approach.
机译:考虑多单元制造系统中的生产分配。为分层控制方案开发了一个模型,其中每个单元由几台容易发生故障的机器组成,对于这些机器,机器状态转换的时间尺度与处理时间相当。生产目标是在需求接近或超过系统容量时尽可能地跟踪非平稳需求。提出了一系列近似值,以获得在接受易解性的同时现实的模型。为了解决由此产生的随机控制问题,对连续时间马尔可夫链的二阶有限时间(瞬态)统计量得出了一般结果。仿真结果表明了提出的模型和控制方法。将这些结果与近视线性编程方法进行比较。

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