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Performance of RAKE reception in dense multipath channels: implications of spreading bandwidth and selection diversity order

机译:密集多径信道中RAKE接收的性能:扩展带宽和选择分集阶数的影响

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摘要

We develop an analytical framework to quantify the effects of the spreading bandwidth (BW) on spread spectrum systems operating in dense multipath environments in terms of the receiver performance, the receiver complexity, and the multipath channel parameters. The focus of the paper is to characterize the symbol error probability (SEP) performance of a RAKE receiver tracking the L strongest multipath components in wide-sense stationary uncorrelated scattering (WSSUS) Gaussian channels with frequency-selective fading. Analytical SEP expressions of the RAKE receiver are derived in terms of the number of combined paths, the spreading BW and the multipath spread of the channel. The proposed problem is made analytically tractable by transforming the physical RAKE paths, which are correlated and ordered, into the domain of a "virtual RAKE" receiver with independent virtual paths. This results in a simple derivation of the SEP for a given spreading BW and an arbitrary number of combined paths.
机译:我们开发了一个分析框架,以根据接收器性能,接收器复杂度和多径信道参数,量化在密集多径环境中运行的扩频系统上扩频(BW)的影响。本文的重点是表征RAKE接收机的符号错误概率(SEP)性能,该接收机在具有频率选择衰落的宽阔固定不相关散射(WSSUS)高斯信道中跟踪L个最强多径分量。 RAKE接收机的解析SEP表达式是根据组合路径的数量,信道的扩展带宽和多径扩展得出的。通过将相关和有序的物理RAKE路径转换为具有独立虚拟路径的“虚拟RAKE”接收机的域,可以使所提出的问题在分析上易于解决。对于给定的扩展带宽和任意数量的组合路径,这导致SEP的简单推导。

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