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Strategic arrivals to queues offering priority service

机译:战略到达队列提供优先服务

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We consider strategic arrivals to a FCFS service system that starts service at a fixed time and has to serve a fixed number of customers, for example, an airplane boarding system. Arriving early induces a higher waiting cost (waiting before service begins) while arriving late induces a cost because earlier arrivals take the better seats. We first consider arrivals of heterogenous customers that choose arrival times to minimize the weighted sum of waiting cost and cost due to expected number of predecessors. We characterize the unique Nash equilibria for this system. Next, we consider a system offering L levels of priority service with a FCFS queue for each priority level. Higher priorities are charged higher admission prices. Customers make two choicestime of arrival and priority of service. We show that the Nash equilibrium corresponds to the customer types being divided into L intervals and customers belonging to each interval choosing the same priority level. We further analyze the net revenue to the server and consider revenue maximizing strategiesnumber of priority levels and pricing. Numerical results show that with only a small number of queues (two or three) the server can obtain nearly the maximum revenue.
机译:我们考虑战略性地到达FCFS服务系统,该系统在固定时间开始服务并必须为固定数量的客户提供服务,例如飞机登机系统。提早到达会导致较高的等待成本(服务开始之前的等待),而提早到达会导致成本的增加,因为提早到达会带来更好的座位。我们首先考虑选择到达时间的异类客户的到达,以最小化等待成本和由于预期的前辈数量导致的成本的加权总和。我们描述了该系统独特的纳什均衡。接下来,我们考虑一个提供L个优先级服务的系统,每个优先级都有一个FCFS队列。优先级越高,门票价格越高。客户有两种选择:到达时间和服务优先级。我们表明,纳什均衡对应于被划分为L个区间的客户类型,并且属于每个区间的客户选择了相同的优先级。我们进一步分析服务器的净收入,并考虑使收入最大化的策略的优先级数量和定价。数值结果表明,只有少量队列(两个或三个),服务器才能获得几乎最大的收益。

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