余数系统编码空时频差分编码的性能研究

R. Akol
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引用次数: 0

摘要

空时频(STF)编码是一种在宽带移动信道上传输高速率数据的技术。文献中提出的大多数架构都是最大限度地从一个分集域获得分集增益,而频率分集主要取决于衰落信道的固有频率选择性。本文提出了差分空时频调制方案。可用带宽由频率编码器划分为几个正交子带,并添加冗余以最大化编码(频率)增益。为了改善接收机的非相干检测,在每个载波上采用差分编码空时分组码的硬决策反馈进行迭代解码,并与外部频率编码器连接。通过解析表达式表明,通过适当的编码设计,所提出的DSTF编码方案可以在空间、时间和频域上获得最大的分集增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On performance of residue number system coded differential space-time-frequency coding
Space-time-frequency (STF) coding has emerged as a technique for transmitting high data rate over wideband mobile channels. Most of the proposed architectures in the literature maximize diversity gains from one diversity domain and frequency diversity is predominantly dependent on the intrinsic frequency-selective nature of the fading channel In this paper we propose differential space-time-frequency (DSTF) modulation scheme. The available bandwidth is divided into several orthogonal subbands by a frequency encoder and redundancy is added to maximize coding (frequency) gains. For improved non-coherent detection at the receiver, iterative decoding employing hard decision-feedback of differentially encoded space-time block code on each carrier is concatenated with an outer frequency encoder. It is shown through analytical expressions that with appropriate code design, the proposed DSTF coding scheme can maximize the diversity gains over space, time, and frequency domains.
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