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Performance analysis of bandwidth requests under unicast, multicast and broadcast pollings in IEEE 802.16d/e

机译:IEEE 802.16d / e中单播,多播和广播轮询下的带宽请求性能分析

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In the polling mode in IEEE 802.16d/e, one of three modes: unicast, multicast and broadcast pollings, is used to reserve bandwidth for data transmission. In the unicast polling, the BS polls each individual MS to allow to transmit a bandwidth request packet, while in the multicast and broadcast pollings, the truncated binary exponential backoff (TBEB) mechanism is adopted as a contention resolution among mobile stations (MSs) in a multicast or broadcast group. This paper investigates the delay of bandwidth requests in the unicast, multicast and broadcast pollings, by deriving the delay distribution of the unicast polling and the TBEB by means of analytical methods. We consider an error-free channel as well as an error-prone channel with i.i.d. constant packet error rate per frame. Furthermore, we find the utilization of transmission opportunity to see efficiency of the bandwidth in the TBEB. Performance evaluations are provided to show that analytical results are well-matched with simulations. By the numerical results, we can find the optimal parameters such as the initial backoff window size of the TBEB and the number of transmission opportunities (or slots) satisfying quality of service (QoS) requirement on delay and loss, and thus we can determine which scheme is better than others depending on the probability of a request arrival during one frame. Numerical examples address that the TBEB performs better than the unicast polling for light traffic loads and vice versa for heavy traffic loads. Also, it is shown that the multicast polling has better performance than the broadcast polling in the sense of shorter delay, lower loss probability and higher utilization of transmission opportunity.
机译:在IEEE 802.16d / e的轮询模式中,单播,多播和广播轮询三种模式之一用于为数据传输保留带宽。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,而在多播和广播轮询中,采用截断的二进制指数退避(TBEB)机制作为移动台(MS)中的争用解决方案。多播或广播组。本文通过分析方法得出单播轮询和TBEB的延迟分布,研究了单播,组播和广播轮询中带宽请求的延迟。我们考虑i.i.d的无错误频道以及容易出错的频道。每帧恒定的包错误率。此外,我们发现利用传输机会来查看TBEB中带宽的效率。提供的性能评估表明分析结果与模拟非常匹配。通过数值结果,我们可以找到最佳参数,例如TBEB的初始退避窗口大小以及满足服务质量(QoS)的时延和损耗要求的传输机会(或时隙)数,从而可以确定根据一帧中请求到达的可能性,该方案比其他方案更好。数值示例表明,对于轻载流量而言,TBEB的性能优于单播轮询,对于重载流量而言,反之亦然。同样,从更短的延迟,更低的丢失概率和更高的传输机会利用率的意义上来看,表明多播轮询比广播轮询具有更好的性能。

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