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Equilibrium balking strategies in Markovian queues with a single working vacation and vacation interruption

机译:单一工作假期和休假中断的马尔可夫队列均衡衡量策略

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In this work, we study customer equilibrium balking strategies in single-server Markovian queueing systems with a single working vacation and vacation interruption. That is, the server undertakes workload with a lower service rate rather than completely stops working during the vacation period. At the instant of completing the service during a vacation period, if there are any customers in the system, the server ends the vacation compulsively and returns to the normal working level, i.e. vacation interruption occurs. Upon arrival, the customers must make a decision whether to join or balk the system based on the information about the number of customers in the system and the server status, along with the reward-cost structure of the system. Accordingly, four cases with respect to different levels of information are introduced and the corresponding Nash equilibria are presented. In addition, the impact of the information levels, as well as of several system parameters, on the equilibrium thresholds and equilibrium joining probabilities is illustrated by numerical examples.
机译:在这项工作中,我们在单服务器马尔可维亚排队系统中研究了客户均衡的废物策略,单一工作度假和假期中断。也就是说,服务器在度假期间,服务率较低,而不是完全停止工作。在休假期间完成服务的瞬间,如果系统中有任何客户,则服务器将休假强制结束并返回到正常工作级别,即发生休假中断。抵达后,客户必须决定是否根据系统中客户数量和服务器状态的信息的信息加入或禁止系统,以及系统的奖励成本结构。因此,引入了四种关于不同信息水平的案例,并提出了相应的纳什均衡。另外,通过数值示例说明了信息水平以及若干系统参数的影响,以及若干系统参数的影响。

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