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Performance Analysis of Contention Based Bandwidth Request Mechanisms in WiMAX Networks

机译:WiMAX网络中基于竞争的带宽请求机制的性能分析

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摘要

WiMAX networks have received wide attention as they support high data rate access and amazing ubiquitous connectivity with great quality-of-service (QoS) capabilities. In order to support QoS, bandwidth request (BW-REQ) mechanisms are suggested in the WiMAX standard for resource reservation, in which subscriber stations send BW-REQs to a base station which can grant or reject the requests according to the available radio resources. In this paper we propose a new analytical model for the performance analysis of various contention based bandwidth request mechanisms, including grouping and no-grouping schemes, as suggested in the WiMAX standard. Our analytical model covers both unsaturated and saturated traffic load conditions in both error-free and error-prone wireless channels. The accuracy of this model is verified by various simulation results. Our results show that the grouping mechanism outperforms the no-grouping mechanism when the system load is high, but it is not preferable when the system load is light. The channel noise degrades the performance of both throughput and delay. © 2010 IEEE.
机译:WiMAX网络以其高服务质量(QoS)功能支持高数据速率访问和惊人的无处不在连接,因此受到了广泛关注。为了支持QoS,在WiMAX标准中提出了用于资源预留的带宽请求(BW-REQ)机制,其中用户站将BW-REQ发送到基站,基站可以根据可用的无线电资源来批准或拒绝请求。在本文中,我们提出了一种新的分析模型,用于对各种基于竞争的带宽请求机制(包括分组和无分组方案)进行性能分析,这是WiMAX标准中建议的。我们的分析模型涵盖了无错误和易出错无线信道中的非饱和和饱和流量负载情况。通过各种仿真结果验证了该模型的准确性。我们的结果表明,当系统负载较高时,分组机制要优于不分组机制,但是当系统负荷较轻时,分组机制就不理想。信道噪声会降低吞吐量和延迟的性能。 ©2010 IEEE。

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