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Optimal strategy analysis of an N-policy two-phase MX/M/1 queueing system with server startup and breakdowns

机译:具有服务器启动和故障的N策略两阶段MX / M / 1排队系统的最佳策略分析

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This paper deals with the optimal control policy of a single removable and unreliable server in an N-policy two-phase MX/M/1 queueing system without gating and server startups. The arrivals occur in batches according to a compound Poisson process and waiting customers receive batch service all at a time in the first phase and proceed to the second phase to receive individual service. The server is turned off each time the system empties, as and when the queue length reaches or exceeds N (threshold), the server is immediately turned on but is temporarily unavailable to serve the waiting batch of customers. The server needs a startup time before providing batch service in the first phase. The server is subject to breakdowns during individual service according to a Poisson process and repair times of the server follow an exponential distribution. The distribution of the system size is derived through probability generating functions and obtained other system characteristics. Finally, the expected cost per unit time is considered to determine the optimal operating policy at a minimum cost. The sensitivity analysis has been carried out to examine the effect of different parameters in the system.
机译:本文研究了N策略两阶段MX / M / 1排队系统中没有门和服务器启动的情况下单个可移动和不可靠服务器的最优控制策略。根据复合Poisson流程分批到达,等待的客户在第一阶段一次全部获得批处理服务,然后进入第二阶段以接受单独的服务。每次系统清空时,服务器都会关闭,并且当队列长度达到或超过N(阈值)时,服务器将立即打开,但暂时无法为正在等待的客户提供服务。在第一阶段提供批处理服务之前,服务器需要启动时间。根据泊松过程,服务器在个别服务期间会发生故障,并且服务器的维修时间呈指数分布。系统大小的分布是通过概率生成函数得出的,并获得了其他系统特征。最后,考虑以每单位时间的预期成本来确定最低成本的最佳运行策略。进行了灵敏度分析,以检查系统中不同参数的影响。

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