WiMAX网络优化——与ARQ和HARQ结合使用的自适应调制和编码方案的效果分析

Abdul Qadir Ansari, A. Rajput, M. Hashmani
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引用次数: 9

摘要

WiMAX框架的灵活性为跨层优化提供了新的维度,并可用于优化应用程序性能。本文主要关注对服务质量(QoS)有直接影响的标识符,并通过使用OPNET Modeler 14.5 Wireless Suite进行计算机模拟来评估这些标识符的效果。在本文中,我们使用了先进的WiMAX功能,如自适应调制和编码(AMC),自动重复请求(ARQ)和混合ARQ来调整WiMAX网络MAC层,使其适应提高容量和延迟(从而优化性能)。ARQ被视为HARQ的高层。最大重传次数后,HARQ放弃。HARQ执行快速重传,如果多次重传后HARQ失败,则由ARQ接管。这为数据提供了额外的保护层。HARQ被证明是最适合WiMAX的(当与主动调制和编码一起使用时),因为它同时考虑了MAC和链路层的混合性质。将ARQ与HARQ结合使用可以略微改善BLER(块错误率),但代价是高UL帧利用率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WiMAX Network Optimization - Analyzing Effects of Adaptive Modulation and Coding Schemes Used in Conjunction with ARQ and HARQ
The flexibility of WiMAX framework offers new dimensions for cross-layer optimization and can be exploited to optimize the application performance. This article focuses on identifiers that have direct impact on Quality of Service (QoS)and effect of such identifiers is evaluated through computer simulation using OPNET Modeler 14.5 Wireless Suite. In this paper we have used advanced WiMAX features such as Adaptive Modulation and Coding (AMC), Automatic Repeat Request(ARQ) and Hybrid-ARQ to tune the WiMAX network MAC Layer such that its adaptation improves both capacity and delay (thus optimize the performance). ARQ is treated as higher layer to HARQ. HARQ gives up after maximum retransmissions. HARQ performs fast retransmissions and ARQ takes over in cases HARQ fails after multiple retransmissions. This gives an added layer of protection to data. HARQ is proved to be most suitable (when used with aggressive modulation and coding) for WiMAX due to its hybrid nature as it takes into account both the MAC and link layer. Using ARQ in conjunction with HARQ gives slight improvement in BLER (Block Error Rate) but at the expense of high UL frame utilization.
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