Error aware distributed space-time decoding for regenerative relay networks

Chao Zhang
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引用次数: 3

Abstract

In this paper, we examine distributed space-time decoding structure for regenerative wireless relay networks. Given the demodulation error at the regenerative relays, we provide a general framework of error aware distributed space-time decoding at the destination, where the receiver is assumed to know the demodulation error probability at relays. Considering the high computational complexity of optimal Maximum Likelihood (ML) decoder, we also propose two low-complexity decoding structures, Max-Log decoder and Max-Log-Sphere decoder. Simulations show that error aware distributed space-time decoding can improve system performance greatly without high system overload, and Max-Log decoder and Max-Log-Sphere decoder can efficiently reduce decoding complexity with neglectable performance degradation.
再生中继网络的错误感知分布式时空译码
本文研究了再生无线中继网络的分布式时空译码结构。考虑到再生中继的解调误差,我们提供了一个错误感知的目标分布式时空译码的通用框架,其中假定接收方知道中继的解调误差概率。考虑到最大似然解码器的高计算复杂度,本文还提出了两种低复杂度的译码结构:Max-Log解码器和Max-Log- sphere解码器。仿真结果表明,错误感知分布式空时译码可以在不造成系统过载的情况下大幅提高系统性能,最大日志码解码器和最大日志球码解码器可以有效降低译码复杂度,且性能下降可以忽略不计。
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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