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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Performance Analysis of Relay Selection with Enhanced Dynamic Decode-and-Forward and Network Coding in Two-Way Relay Channels
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Performance Analysis of Relay Selection with Enhanced Dynamic Decode-and-Forward and Network Coding in Two-Way Relay Channels

机译:双向继电器通道中增强动态解码和前进和网络编码的继电器选择性能分析

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Relay selection (RS), enhanced dynamic decode-and-forward (EDDF), and network coding (NC) have been proven to effectively improve the performance of cooperative communications systems. This motivates us to combine these three techniques to see how they can improve the performance of cooperative communications systems. In this study, we adopt the RS protocol proposed by Bletsas, Khisti, Reed and Lippman in 2006. The protocol features an EDDF and NC system for two-hop two-way multirelay networks. All nodes are single-input single-output and half-duplex (i.e., they cannot transmit and receive data simultaneously). The outage probability and its asymptotic behavior at a high SNR, diversity gain, coding gain at a high SNR, multiplexing gain of the sum rate, and spectrum efficiency of the RS-DDF&NC and RS-EDDF&NC schemes were analyzed. In this paper, we present comparisons of the outage probability in various scenarios under the Rayleigh fading channel. Our results demonstrate that the RS protocol with the EDDF and NC scheme exhibits optimal performance regarding outage probability based on the considered DF relay scheme if there exist sufficient relays. In addition, the performance loss is large if a relay is selected randomly. This demonstrates the importance of RS strategies.
机译:中继选择(RS),增强的动态解码(EDDF)和网络编码(NC)已被证明是有效提高合作通信系统的性能。这使我们能够结合这三种技术来了解它们如何改善合作通信系统的性能。在这项研究中,我们在2006年采用了Bletsas,Khisti,Reed和Lippman提出的RS协议。该协议为两跳双向多虹灯网络提供EDDF和NC系统。所有节点都是单输入单输出和半双工(即,它们不能同时传输和接收数据)。分析了高SNR,多样性增益,高SNR的编码增益,在RS-DDF&NC和RS-EDDF方案的总和率的多路复用增益和RS-EDDF和NC方案的高SNR中的分集增益,编码增益和RS-DDF&NC和RS-EDDF方案的频谱效率下的停电概率及其渐近性。在本文中,我们在瑞利衰落通道下的各种场景中的停电概率的比较。我们的结果表明,如果存在足够的继电器,则具有EDDF和NC方案的RS协议具有关于基于所考虑的DF中继方案的最佳性能。此外,如果随机选择继电器,性能损失很大。这证明了RS战略的重要性。

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