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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Diversity Combining Options and Low-Complexity MMSE Equalization for Spread Spectrum OFDM Systems in Frequency Selective Fading Channels
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Diversity Combining Options and Low-Complexity MMSE Equalization for Spread Spectrum OFDM Systems in Frequency Selective Fading Channels

机译:选频衰落信道中扩频OFDM系统的分集组合选项和低复杂度MMSE均衡

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摘要

This paper compares diversity combining schemes for the downlink of spread spectrum orthogonal frequency division multiplexing (SS-OFDM) systems in frequency selective fading channels. In particular, symbol-level combining after despreading is compared to chip-level combining under maximal ratio combining (MRC) of signals from different diversity branches and minimum mean-square error (MMSE) equalization of spreading sequences. Symbol-level combining takes place after the operations of MMSE equalization and despreading, whereas the operations of equalization and despreading occur after MRC if chip-level combining is used. Chip-level combining combines diversity samples in an efficient manner while reducing inter-code interference (self-interference) that results from the loss of orthogonality of spreading sequences due to a frequency selective channel. This method is shown to be superior to symbol-level combining when the diversity branches are uncorrected, and when the branches differ only due to subcarrier interleaving. An MMSE equalization method with significantly reduced complexity for partially loaded systems is also presented, based on the premise of chip-level combining. Novel expressions for the bit error rate (BER) of the two methods, as well as the extension of the analysis to partially loaded systems are given. The extensions of chip-level combining and low-complexity equalization of a partially loaded system to an OFDM system with 2-dimensional spreading are also presented. The results are relevant to antenna diversity as well as temporal diversity achieved though re-transmission within an ARQ scheme.
机译:本文比较了频率选择性衰落信道中扩频正交频分复用(SS-OFDM)系统下行链路的分集组合方案。特别地,在来自不同分集分支的信号的最大比率合并(MRC)和扩展序列的最小均方误差(MMSE)均衡下,将解扩后的符号级合并与码片级合并进行比较。符号级合并发生在MMSE均衡和解扩操作之后,而均衡和解扩操作发生在MRC之后(如果使用码片级合并)。码片级组合以有效的方式组合分集样本,同时减少了由于频率选择信道而导致扩频序列的正交性损失而导致的码间干扰(自干扰)。当分集分支未经校正,并且当分支仅由于子载波交织而不同时,该方法显示出优于符号级组合。在芯片级合并的前提下,还提出了一种用于部分加载系统的,复杂度大大降低的MMSE均衡方法。给出了两种方法的误码率(BER)的新颖表达式,以及对部分加载系统的分析扩展。还介绍了芯片级合并和部分加载系统的低复杂度均衡到具有二维扩展的OFDM系统的扩展。结果与天线分集以及通过ARQ方案中的重发获得的时间分集有关。

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