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Performance Analysis of IEEE 802.16 Multicast and Broadcast Polling based Bandwidth Request

机译:基于IEEE 802.16组播和广播轮询的带宽请求的性能分析

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Recently, IEEE has standardized the 802.16 protocol for wireless metropolitan area networks. In the point-to-multipoint (PMP) mode of the medium access control (MAC), the subscriber stations (SSs) request bandwidth based upon unicast, multicast and broadcast polling by the base station (BS). Polling is the process by which the BS allocates to the SSs bandwidth specifically for the purpose of making bandwidth requests. The SSs contend for the transmission opportunities which are allocated by the BS when they want to transmit the bandwidth request. Generally speaking, the contention intensity heavily influences the network performance. However, no attention is paid to investigate the impact of the system parameters to the utilization of transmission opportunity. This paper provides a simple, but nevertheless accurate, analytical model to compute the utilization of transmission opportunity, in the assumption of finite number of subscriber stations and ideal channel conditions. The proposed analysis applies to multicast and broadcast polling mechanisms. The analytical results match with the simulation results very well and the performance evaluation reveals that the utilization of transmission opportunity mainly depends on the initial contention window size, the network size and the average number of transmission opportunities in one frame. The simulation data also show that multicast polling can achieve higher utilization than broadcast polling especially when the network size is large.
机译:最近,IEEE已经为无线城域网标准化了802.16协议。在媒体访问控制(MAC)的点对多点(PMP)模式下,用户站(SS)基于基站(BS)的单播,多播和广播轮询请求带宽。轮询是BS专门为发出带宽请求而分配给SS带宽的过程。 SS争夺当它们想要发送带宽请求时由BS分配的传输机会。一般来说,竞争强度会严重影响网络性能。但是,没有注意研究系统参数对传输机会的利用的影响。本文提供了一个简单但准确的分析模型,可以在假设用户站数量有限且信道条件理想的情况下计算传输机会的利用率。提出的分析适用于多播和广播轮询机制。分析结果与仿真结果非常吻合,性能评估结果表明,传输机会的利用主要取决于初始竞争窗口的大小,网络大小以及一帧中平均传输机会的数目。仿真数据还显示,尤其是在网络规模较大时,多播轮询比广播轮询可以实现更高的利用率。

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