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Controlling Intercell Interference in CDMA-based Fixed Wireless Networks Through Multirate Techniques

机译:通过多速率技术控制基于CDMA的固定无线网络中的小区间干扰

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摘要

A number of research works have suggested a possible capacity advantage when employing direct sequence-code division multiple access (DS-CDMA) instead of the more common time division multiple access option for fixed broadband wireless access networks operating at millimeter-waves. The choice of this multiple access scheme, which, up to now, has not been foreseen by recent WiMax (worldwide interoperability for microwave access) standards, exhibits an improved performance in terms of cochannel interference in the upstream, even though it experiences higher interference in the downstream. The present paper focuses on enhancing the bottleneck downstream performance of fixed wireless networks by proposing a methodology for controlling the signal-to-interference ratio throughout the cell, so that all subscribers meet the given interference quality-of-service specifications. This is accomplished by exploiting the properties of a combination of multirate CDMA techniques. The paper describes a simple policy for code assignment, which is proved to be optimal, incorporating the effect of rain fading over multiple paths. The performance of the algorithm is tested against single code DS-CDMA both under long term channel statistics (static code assignment) and under dynamic channel effects (dynamic code assignment). The first test verifies the compliance of all sector subscribers with more demanding SIR specifications, while the second yields a significant improvement in terms of resource utilization.
机译:许多研究工作表明,对于在毫米波下工作的固定宽带无线接入网络,采用直接序列码分多址(DS-CDMA)代替更常见的时分多址选项时,可能具有容量优势。到目前为止,最新的WiMax(微波接入的全球互操作性)标准尚未预见到这种多址方案的选择,即使在上行链路中受到较高的同频干扰,该方案仍表现出更好的性能。下游。本文通过提出一种控制整个小区内信噪比的方法,致力于提高固定无线网络的瓶颈下行性能,从而使所有用户都满足给定的干扰服务质量规范。这是通过利用多速率CDMA技术的组合特性来实现的。本文描述了一种简单的代码分配策略,该策略被证明是最优的,并结合了多路径上雨衰的影响。在长期信道统计(静态代码分配)和动态信道效应(动态代码分配)下,针对单个代码DS-CDMA测试了算法的性能。第一项测试验证了所有行业用户是否符合更严格的SIR规范,而第二项测试则在资源利用率方面取得了显着改善。

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