A reduced complexity RAKE receiver with decision feedback equalization for DS/SS communication over multipath fading channels

K. Wuyts, H. Moeneclaey
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引用次数: 4

Abstract

Spread spectrum communication over a multipath fading channel usually outperforms narrowband communication because the number of resolvable paths is higher when the signal bandwidth is larger. Unfortunately, the complexity of the optimum RAKE receiver is proportional to the ratio of the channel delay spread to the chip duration, which might be very large when the delay spread exceeds the symbol duration. We introduce a reduced complexity RAKE receiver, followed by decision feedback equalization. Assuming the multipath intensity profile of the channel consisting of distinct clusters with random delays (as is the case for the HF radio channel), we compare the performance of the proposed receiver with the performances of the optimum RAKE receiver for spread spectrum communication and the receiver for narrowband communication. Although the proposed receiver structure has a performance loss of a few dB as compared to the optimum RAKE receiver, we find that it still outperforms narrowband communication.
基于决策反馈均衡的低复杂度RAKE接收机用于多径衰落信道的DS/SS通信
在多径衰落信道上的扩频通信通常优于窄带通信,因为当信号带宽较大时,可解析路径的数量较多。不幸的是,最佳RAKE接收器的复杂性与信道延迟扩展与芯片持续时间的比率成正比,当延迟扩展超过符号持续时间时,该比率可能非常大。我们介绍了一个降低复杂性的RAKE接收器,然后是决策反馈均衡。假设由具有随机延迟的不同簇组成的信道的多径强度分布(如高频无线电信道的情况),我们将所提出的接收机的性能与扩频通信的最佳RAKE接收机和窄带通信接收机的性能进行比较。尽管与最佳RAKE接收器相比,所提出的接收器结构具有几个dB的性能损失,但我们发现它仍然优于窄带通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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