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User equilibria for a parallel queueing system with state dependent routing

机译:具有状态相关路由的并行排队系统的用户平衡

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Consider a system of two queues in parallel, one of which is a ·|M| 1 single-server infinite capacity queue, and the other a ·|G~(N)|∞ batch service queue. A stream of general arrivals choose which queue to join, after observing the current state of the system, and so as to minimize their own expected delay. We show that a unique user equilibrium (user optimal policy) exists and that it possesses various monotonicity properties, using sample path and coupling arguments. This is a very simplified model of a transportation network with a choice of private and public modes of transport. Under probabilistic routing (which is equivalent to the assumption that users have knowledge only of the mean delays on routes), the network may exhibit the Downs-Thomson paradox observed in transportation networks with expected delay increasing as the capacity of the ·|M| 1 queue (private transport) is increased. We give examples where state-dependent routing mitigates the Downs-Thomson effect observed under probabilistic routing, and providing additional information on the state of the system to users reduces delay considerably.
机译:考虑一个并行的两个队列的系统,其中一个是·| M |。 1个单服务器无限容量队列,另一个是·| G〜(N)|∞批服务队列。普通到达流在观察系统当前状态后选择要加入的队列,以最大程度地减少其自身的预期延迟。我们使用样本路径和耦合参数表明存在唯一的用户均衡(用户最优策略),并且它具有各种单调性。这是运输网络的非常简化的模型,可以选择私有和公共运输方式。在概率路由下(这相当于假设用户仅了解路线的平均延迟),网络可能会表现出在运输网络中观察到的Downs-Thomson悖论,而预期延迟会随着·| M |的容量而增加。 1个队列(专用传输)增加了。我们给出了一些示例,其中基于状态的路由减轻了在概率路由下观察到的Downs-Thomson效应,并且向用户提供了有关系统状态的其他信息,从而大大减少了延迟。

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