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Performance Analysis of Multi-Relay Selective DF Based OFDM Cooperative Systems Over Time Selective Links with Imperfect CSI

机译:基于多继电器选择性DF的性能分析,随着时间选择性链接与Imperfect CSI的选择性联系

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This paper considers an Orthogonal Frequency Division Multiplexing (OFDM) based selective decode-and-forward (DF) cooperative communication system with multiple mobile relays between the mobile source and destination. Closed form expressions have been derived for the average end-to-end SER and also the asymptotic error floor considering a Rayleigh faded correlated multi tap channel with time selectivity due to node mobility and imperfect channel estimates for the source-destination, source-relay and relay-destination links. Further, a framework is also developed for optimal power allocation for a given total system power budget. Simulation results have been presented to illustrate the system performance for various OFDM channel and mobility conditions and also to verify the analytical results derived. Furthermore, it is demonstrated that optimal power allocation leads to a performance improvement in comparison to the conventional equal power allocation especially in the low and moderate SNR regimes. At high SNR, the system performance with both optimal and equal power allocation can be seen to approach an asymptotic floor, since the system performance is independent of the power of the noise components, which is also supported by the analysis.
机译:本文考虑基于正交的频分复用(OFDM)的基于正交频分复用(OFDM),其具有移动源和目的地之间的多个移动继电器的选择性解码和前进(DF)协同通信系统。由于节点移动性和源 - 目的地,源 - 中继和源 - 中继的不完美信道估计,用于平均端到端SER和渐近误差地板,渐近的误差底部是针对rayleigh褪色相关的多敲击通道的渐近形式表达式。中继目标链接。此外,还开发了一种框架,用于给定总系统功率预算的最佳功率分配。已经提出了仿真结果以说明各种OFDM信道和移动条件的系统性能,也可以验证导出的分析结果。此外,证明了与传统的等电力分配相比,最佳功率分配导致性能改进,尤其是在低和中等的SNR制度中。在高SNR时,可以看到具有最佳和等电功率分配的系统性能以接近渐近地板,因为系统性能与噪声分量的功率无关,这也被分析支持。

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