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Exact error performance analysis of binary space-time block coded cooperative communications systems in Rayleigh fading channels

机译:瑞利衰落信道中二进制空时分组编码协作通信系统的精确误差性能分析

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摘要

Cooperative communications using the Alamouti space-time block code (STBC) has been mentioned intensively. However, to our knowledge, an in-depth error performance analysis for a space-time coded cooperative communications system, where each node acts as both a source node and a relay node for its partner, has not been reported. Intuitively, cooperative communications would not always be better than direct transmission, but only under certain conditions. This paper first derives an exact performance analysis of the Alamouti STBC cooperative communications for a Binary Phase Shift Keying (BPSK) constellation, which could be extended to a higher density modulation scheme. This mathematical analysis facilitates the source nodes to decide pro-actively whether cooperative communications or direct transmission should be used, depending on the channel conditions between the sources themselves and the channel conditions between the sources and the destination. The anterior knowledge of which transmission mode should be used before nodes actually engage in cooperation is useful to keep system operations as simple as possible, while assuring that cooperative communications is definitely beneficial once it is in place. The analytical error performances are then verified by simulations and in-depth discussions on the simulation results are presented.
机译:已经广泛提及使用Alamouti时空分组码(STBC)的协作通信。但是,据我们所知,尚未报告针对空时编码协作通信系统的深入错误性能分析,在该系统中,每个节点都充当其伙伴的源节点和中继节点。直觉上,协作通信并不总是比直接传输更好,而只是在某些条件下。本文首先针对二进制相移键控(BPSK)星座图得出了Alamouti STBC协作通信的精确性能分析,该分析可以扩展到更高密度的调制方案。这种数学分析有助于源节点根据源自身之间的信道状况以及源与目的地之间的信道状况,主动决定应使用协作通信还是直接传输。在节点实际参与协作之前应该使用哪种传输模式的先前知识对于保持系统操作尽可能简单是有用的,同时确保协作通信一旦到位肯定是有益的。然后,通过仿真验证分析误差性能,并对仿真结果进行深入讨论。

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