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Differential Modulation With Threshold-Based Decision Combining for Cooperative Communications

机译:协作通信中基于阈值决策的差分调制

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Differential modulation is widely known as a practical alternative that provides a good tradeoff between receiver complexity and performance. However, the available differential schemes for wireless relay networks require perfect synchronization and/or provide limited transmission rates. This paper proposes a threshold-based differential decode-and-forward cooperative scheme that not only alleviates the problems of synchronization and rate limitation, but also efficiently exploits the cooperative relay channels via the use of a predetermined decision threshold. In the proposed scheme, the source information is forwarded by the relay only if it is correctly decoded. The properly designed threshold enables the destination to decide whether the received signal from the relay contains information such that the received signals from the source and the relay can be efficiently combined and jointly decoded. Bit error rate (BER) performance analysis of the proposed scheme is analyzed in the case of differential M-ary PSK signals. The analysis focuses on the case when the relay is able to judge whether each decoded symbol is corrected or not. The obtained BER performance in this case serves as a performance benchmark, and the proposed differential decode-and-forward scheme can achieve it in an ideal situation that the error propagation at the relay can be negligible. A tight BER approximation is first derived, and then BER upper bound and lower bound are determined. Based on the tight BER approximation, joint optimum decision threshold and power allocation are numerically evaluated. Both analytical and simulation results reveal that the decision threshold and the power allocation depend on qualities of the communication channels. Interestingly, when the link quality between relay and destination is very good, the effect of the threshold dominates the effect of the power allocation at high signal-to-noise ratio. Extensive simulation results are provided to validate the- merit of the proposed scheme and confirm the theoretical analysis.
机译:众所周知,差分调制是一种实用的选择,它可以在接收机复杂度和性能之间取得良好的平衡。但是,用于无线中继网络的可用差分方案需要完美的同步和/或提供有限的传输速率。本文提出了一种基于阈值的差分解码-转发协作方案,该方案不仅可以缓解同步和速率限制问题,而且可以通过使用预定的决策阈值有效地利用协作中继信道。在提出的方案中,仅在正确解码了源信息的情况下,中继器才转发源信息。经过适当设计的阈值使目标能够确定是否从中继站接收到的信号包含信息,以便可以有效地组合和解码来自源和中继站的接收到的信号。在差分M进制PSK信号的情况下,分析了所提出方案的误码率(BER)性能。分析集中在中继器能够判断每个解码符号是否被校正的情况下。在这种情况下,所获得的BER性能可作为性能基准,所提出的差分解码和转发方案可以在理想的情况下实现这一点,即在中继器处的错误传播可以忽略不计。首先得出紧密的BER近似值,然后确定BER的上限和下限。基于严格的BER近似,对联合最优决策阈值和功率分配进行了数值评估。分析和仿真结果均表明,决策阈值和功率分配取决于通信信道的质量。有趣的是,当中继站与目的地之间的链路质量非常好时,阈值的影响将在高信噪比的情况下主导功率分配的影响。提供了广泛的仿真结果,以验证所提出方案的优点并确认理论分析。

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