Dynamic routing and jockeying controls in a two-station queueing system

Author:

Xu Susan H.,Zhao Y. Quennel

Abstract

This paper studies optimal routing and jockeying policies in a two-station parallel queueing system. It is assumed that jobs arrive to the system in a Poisson stream with rate λand are routed to one of two parallel stations. Each station has a single server and a buffer of infinite capacity. The service times are exponential with server-dependent rates, μ1 and μ2. Jockeying between stations is permitted. The jockeying cost is cij when a job in station i jockeys to station j, ij. There is no cost when a new job joins either station. The holding cost in station j is hj, h1h2, per job per unit time. We characterize the structure of the dynamic routing and jockeying policies that minimize the expected total (holding plus jockeying) cost, for both discounted and long-run average cost criteria. We show that the optimal routing and jockeying controls are described by three monotonically non-decreasing functions. We study the properties of these control functions, their relationships, and their asymptotic behavior. We show that some well-known queueing control models, such as optimal routing to symmetric and asymmetric queues, preemptive or non-preemptive scheduling on homogeneous or heterogeneous servers, are special cases of our system.

Publisher

Cambridge University Press (CUP)

Subject

Applied Mathematics,Statistics and Probability

Cited by 12 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Analysis of a Queuing System with Possibility of Waiting Customers Jockeying between Two Groups of Servers;Mathematics;2023-03-17

2. Optimal Policy for Controlling Two-Server Queueing Systems with Jockeying;Journal of Systems Engineering and Electronics;2022-02

3. An Overview for Markov Decision Processes in Queues and Networks;Stochastic Models in Reliability, Network Security and System Safety;2019

4. Tail Asymptotics of Two Parallel Queues with Transfers of Customers;Journal of the Operations Research Society of China;2016-04-29

5. STRATEGIC DYNAMIC JOCKEYING BETWEEN TWO PARALLEL QUEUES;Probability in the Engineering and Informational Sciences;2015-10-21

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