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Delay Analysis and Optimization of Bandwidth Request under Unicast Polling in IEEE 802.16e over Gilbert-Elliot Error Channel

机译:Gilbert-Elliot错误信道上IEEE 802.16e中单播轮询下的带宽请求延迟分析和优化

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摘要

In the centralized polling mode in IEEE 802.16e, a base station (BS) polls mobile stations (MSs) for bandwidth reservation in one of three polling modes; unicast, multicast, or broadcast pollings. In unicast polling, the BS polls each individual MS to allow to transmit a bandwidth request packet. This paper presents an analytical model for the unicast polling of bandwidth request in IEEE 802.16e networks over Gilbert-Elliot error channel. We derive the probability distribution for the delay of bandwidth requests due to wireless transmission errors and find the loss probability of request packets due to finite retransmission attempts. By using the delay distribution and the loss probability, we optimize the number of polling slots within a frame and the maximum retransmission number while satisfying QoS on the total loss probability which combines two losses: packet loss due to the excess of maximum retransmission and delay outage loss due to the maximum tolerable delay bound. In addition, we obtain the utilization of polling slots, which is defined as the ratio of the number of polling slots used for the MS's successful transmission to the total number of polling slots used by the MS over a long run time. Analysis results are shown to well match with simulation results. Numerical results give examples of the optimal number of polling slots within a frame and the optimal maximum retransmission number depending on delay bounds, the number of MSs, and the channel conditions.
机译:在IEEE 802.16e的集中式轮询模式中,基站(BS)以三种轮询模式之一来轮询移动台(MS)以进行带宽预留。单播,多播或广播轮询。在单播轮询中,BS轮询每个单独的MS以允许发送带宽请求数据包。本文提出了一种在Gilbert-Elliot错误信道上对IEEE 802.16e网络中的带宽请求进行单播轮询的分析模型。我们推导了由于无线传输错误导致的带宽请求延迟的概率分布,并找到了由于有限的重发尝试而导致的请求数据包丢失的概率。通过使用延迟分布和丢失概率,我们优化了帧内的轮询时隙数和最大重传次数,同时在总丢失概率上满足了QoS,该总损失概率结合了以下两种丢失:最大重发过多导致的数据包丢失和延迟中断由于最大可容忍的延迟界限而造成的损失。另外,我们获得了轮询时隙的利用率,它的定义是用于长时间成功运行MS成功传输的轮询时隙数与MS使用的轮询时隙总数之比。分析结果显示与仿真结果非常匹配。数值结果给出了一个示例,该示例取决于延迟范围,MS数量和信道条件,从而确定一帧中轮询时隙的最佳数量和最佳最大重传数量。

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