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Performance analysis of handoff schemes with preemptive and nonpreemptive channel borrowing in integrated wireless cellular networks

机译:集成无线蜂窝网络中具有抢占式和非抢占式信道借用的切换方案的性能分析

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In this paper, we propose and analyze two different handoff schemes in integrated wireless mobile networks. The channels in each cell are divided into two parts and pre-allocated for real-time and nonreal-time services. To increase the channel utilization while keeping the quality of service (QoS) of each type for traffic, one type of service is allowed to borrow channels from the other under certain constraints. Depending on whether or not nonreal-time service calls can be interrupted, we have two channel borrowing schemes: nonpreemptive and preemptive. We use a system model defined by a multidimensional Markov chain and compute the performance in terms of blocking probability of originating calls, forced termination probability of real-time service calls, and average transmission delay of nonreal-time service calls. The simulation results are observed to match closely with the analytical model. The preemptive borrowing scheme is observed to perform better than the nonpreemptive scheme at the cost of increased handoff for nonreal-time service calls. The impact of the long-term dependence of data traffic on system performance is also discussed.
机译:在本文中,我们提出并分析了集成无线移动网络中的两种不同的切换方案。每个小区中的信道分为两部分,并为实时和非实时服务预先分配。为了在保持每种流量类型的服务质量(QoS)的同时提高信道利用率,在某种限制下,允许一种类型的服务从另一种类型的服务借用信道。根据是否可以中断非实时服务呼叫,我们有两种渠道借用方案:非抢占式和抢占式。我们使用由多维马尔可夫链定义的系统模型,并根据发起呼叫的阻塞概率,实时服务呼叫的强制终止概率以及非实时服务呼叫的平均传输延迟来计算性能。观察到仿真结果与分析模型非常匹配。观察到抢占式借贷方案的性能要优于非抢占式方案,但代价是非实时服务呼叫的切换增加了。还讨论了数据流量的长期依赖性对系统性能的影响。

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