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Optimal Resource Scheduling in Wireless Multiservice Systems With Random Channel Connectivity

机译:随机通道连接无线多业务系统中的最佳资源调度

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We investigate an optimal scheduling problem in a discrete-time system of L parallel queues that are served by K identical servers. This model has been widely used in studies of emerging 3G/4G wireless systems. We introduce the class of Most Balancing (MB) policies and provide their mathematical characterization. We prove that MB policies are optimal among all work conserving policies; we define optimality as minimization, in stochastic ordering sense, of a range of cost functions of the queue lengths, including the process of total number of packets in the system. We use dynamic coupling arguments for our proof. We also introduce the Least Connected Server First/Longest Connected Queue (LCSF/LCQ) policy as an approximate implementation of MB policies. We conduct a simulation study to compare the performance of several work conserving policies to that of the optimal one. In the simulations we relax some of the mathematical assumptions we required for the analytical proofs. The simulation results show that: (a) in all cases, MB policies outperform the other policies, (b) randomized policies perform fairly close to the optimal one, and, (c) the performance advantage of the optimal policy over the other work conserving policies increases as the channel connectivity decreases.
机译:我们在LPARTION队列的离散时间系统中调查最佳调度问题,该问题由K个相同的服务器提供服务。该模型已广泛用于新兴3G / 4G无线系统的研究。我们介绍了大多数平衡(MB)政策的课程,并提供了他们的数学特征。我们证明了MB政策在所有工作保守政策中都是最佳的;我们将最佳状态定义为队列长度的一系列成本函数的随机订购意义上的最小化,包括系统中的数据包总数的过程。我们使用动态耦合参数进行证明。我们还介绍了最少连接的服务器第一/最长连接队列(LCSF / LCQ)策略作为MB策略的近似实现。我们进行了模拟研究,比较了几个工作节省政策对最佳的表现。在模拟中,我们可以放宽分析证据所需的一些数学假设。仿真结果表明:(a)在所有情况下,MB政策优于其他政策,(b)随机政策执行相当接近最佳的政策,(c)最佳政策对其他工作保守的性能优势随着信道连接减少,政策会增加。

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