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Near-optimal channel reservation for cellular phone system

机译:蜂窝电话系统的近最佳信道预留

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Abstract: In this paper, optimal management of requests for channel usage in a cellular system is formulated as an access control problem for a multi-server-loss-queue network. Using an inductive approach of dynamic programming, the optimal channel reservation policy is induced to be functions of the number of ongoing cellular calls in each cell. However, the scale of cellular networks is generally very large. So, the computational burden of finding an optimal policy may be too heavy due to its involvement with the states for all cells in the network. Hence, the idea of bottleneck modelling and aggregation method in stochastic process is used to downsize the system and find a near-optimal channel reservation policy. Focusing on the target cell, we first reduce the scale of loss-queue network to a seven-cell model with the compensation of system parameters. Furthermore, an aggregation method is proposed to further reduce the seven-cell model to a two-queue system. Numerical results show that the near-optimal control policy based on the reduced two-queue model demonstrates close performance to the optimal reservation policy.
机译:摘要:本文将蜂窝系统中信道使用请求的最优管理表述为多服务器丢失队列网络的访问控制问题。使用动态编程的归纳方法,最佳信道预留策略被诱导为每个小区中正在进行的蜂窝呼叫的数量的函数。但是,蜂窝网络的规模通常非常大。因此,由于其涉及网络中所有小区的状态,因此找到最佳策略的计算负担可能太重。因此,采用随机过程中的瓶颈建模和聚合方法的思想来缩小系统规模,并找到一种接近最优的信道预留策略。着眼于目标小区,我们首先通过补偿系统参数将损耗排队网络的规模缩小为七小区模型。此外,提出了一种聚合方法以将七单元模型进一步简化为两队列系统。数值结果表明,基于简化二队列模型的近似最优控制策略具有接近最优预留策略的性能。

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