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The fluid limit of the multiclass processor sharing queue

机译:多类处理器共享队列的流体限制

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Consider a single server queueing system with several classes of customers, each having its own renewal input process and its own general service times distribution. Upon completing service, customers may leave, or re-enter the queue, possibly as customers of a different class. The server is operating under the egalitarian processor sharing discipline. Building on prior work by Gromoll et al. (Ann. Appl. Probab. 12:797-859, 2002) and Puha et al. (Math. Oper. Res. 31(2):316-350, 2006), we establish the convergence of a properly normalized state process to a fluid limit characterized by a system of algebraic and integral equations. We show the existence of a unique solution to this system of equations, both for a stable and an overloaded queue. We also describe the asymptotic behavior of the trajectories of the fluid limit.
机译:考虑一个具有多个客户类别的单一服务器排队系统,每个客户都有自己的更新输入过程和自己的一般服务时间分配。完成服务后,客户可能会以其他类别的客户身份离开或重新进入队列。服务器在平等的处理器共享原则下运行。基于Gromoll等人的先前工作。 (Ann。Appl.Probab.12:797-859,2002)和Puha等人(J.Pharm.Sci。,Vol.26,pp.12-596)。 (Math.Oper.Res.31(2):316-350,2006),我们建立了适当归一化状态过程对以代数和积分方程组为特征的流体极限的收敛性。我们展示了对于稳定和超载队列,此方程组系统都有唯一的解决方案。我们还描述了流体极限轨迹的渐近行为。

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