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A Full-Rate and Low-Detection Complexity Cooperative Transmission Scheme Based on Distributed Space-Time-Frequency Code Design

机译:一种基于分布式空时频码设计的全速率和低检测复杂性协作传输方案

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The cooperative transmission schemes based on the amplify and forward (AF) mode have the defect of low transmission rate and the exiting full-rate cooperative transmission schemes based on space-time code design have the defect of high detection complexity. Therefore, this paper makes the best of linear constellation precoding (LCP) technique and cyclic delay diversity (CDD) technique, and adopts the non-orthogonal amplify and forward (NAF) mode, finally proposes a new full-rate wireless cooperative transmission scheme based on space-time-frequency code design. Compared with the cooperative transmission schemes that only pursue the transmission rate or the BER performance, this new scheme can apply to multi-relay scenario, and has the advantages of simple structure, low signal detection complexity that does not increases with the number of relay nodes. All of above makes the real-time data transmission service of high quality come to be possible.
机译:基于放大和前进(AF)模式的协作传输方案具有低传输速率的缺陷,并且基于时空码设计的退出全速率传输方案具有高检测复杂性的缺陷。因此,本文采用了最佳的线性星座预编码(LCP)技术和循环延迟分集(CDD)技术,并采用非正交放大和前进(NAF)模式,最后提出了一种基于新的全速率无线协作传输方案关于时空频率规范设计。与仅追求传输速率或BER性能的合作传输方案相比,这种新方案可以应用于多继电器场景,并且结构简单,低信号检测复杂度不会随着中继节点的数量而增加。所有上述都使得高质量的实时数据传输服务成为可能。

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