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A queueing-based optimization model for planning inventory of repaired components in a service center

机译:基于队列的优化模型,用于计划服务中心中已维修组件的库存

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We address the problem of managing repair capacity and repaired component inventory in a service center. With modular products, the repair essentially involves identifying the faulty component in the product and replacing it with a repaired component or a new component, if repaired components are not available in stock. The faulty component is then repaired and used to service a future faulty product that arrives for repair. The problem is modeled as a queueing system with a limit on the queue length. The total cost function involves the steady-state probabilities and queue length of the queueing system. Using the properties of the cost function that we derive, we identify bounds on the decision variables, and use them in developing an algorithm to determine the optimal repair capacity and repaired component inventory. A computational study is carried out to investigate the impact of the various cost parameters on the optimal solution.
机译:我们解决了在服务中心管理维修能力和维修的零件库存的问题。对于模块化产品,如果没有库存的维修组件,则维修实质上涉及识别产品中的故障组件,并用维修的组件或新的组件进行替换。然后对有故障的组件进行维修,并用于维修将来要维修的有故障的产品。该问题被建模为队列长度受限制的排队系统。总成本函数涉及排队系统的稳态概率和队列长度。利用我们得出的成本函数的属性,我们确定决策变量的界限,并将其用于开发算法以确定最佳维修能力和维修零件库存。进行了一项计算研究,以研究各种成本参数对最佳解决方案的影响。

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