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Multiple-relay aided distributed turbo coding assisted differential unitary space-time spreading for asynchronous cooperative networks

机译:用于异步协作网络的多中继辅助分布式turbo编码辅助差分酉空时扩频

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摘要

This paper proposes a cooperative space-time coding (STC) protocol, amalgamating the concepts of asynchronous cooperation, non-coherent detection as well as Distributed Turbo Coding (DTC), where neither symbol-level time synchronization nor CSI estimation is required at any of the cooperating nodes, while attaining a high performance even at low SNRs. More specifically, a practical cooperative differential space-time spreading (CDSTS) scheme is designed with the aid of interference rejection spreading codes, in order to eliminate the effect of synchronization errors between the relay nodes without the assistance of channel estimation or equalization. Furthermore, a set of space-time codewords are constructed based on Differential Linear Dispersion Codes (DLDC), which allows our CDSTS system to support an arbitrary number of relay nodes operating at a high transmission rate due to its flexible design. Rather than using conventional single-relay assisted DTCs, novel multi-relay-assisted DTCs and a three-stage iteratively-decoded destination receiver structure are developed. In our simulations the system parameters are designed with the aid of EXIT chart analysis, followed by the characterization of the achievable BER performance for various synchronization delay values as well as for various diversity-multiplexing relationships in frequency-selective fast and/or quasi static Rayleigh fading environments.
机译:本文提出了一种协作空时编码(STC)协议,将异步协作,非相干检测以及分布式Turbo编码(DTC)的概念进行了融合,其中在任何一种情况下都不需要符号级时间同步或CSI估计。协作节点,即使在低SNR时也能获得高性能。更具体地,借助于干扰抑制扩展码来设计实用的协作差分时空扩展(CDSTS)方案,以消除中继节点之间的同步误差的影响而无需信道估计或均衡。此外,基于差分线性色散码(DLDC)构造了一组时空码字,由于其灵活的设计,它使我们的CDSTS系统能够以高传输速率支持任意数量的中继节点。而不是使用传统的单中继辅助DTC,而是开发了新颖的多中继辅助DTC和三阶段迭代解码的目标接收器结构。在我们的仿真中,借助EXIT图表分析设计系统参数,然后表征在频率选择快速和/或准静态瑞利条件下各种同步延迟值以及各种分集复用关系可实现的BER性能。衰落的环境。

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