On the achievable outage probability of opportunistic relaying with decode-and-forward

Ning Hu, Xiaofeng Zhong, Ming Zhao, Jing Wang, Luo Chen
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Abstract

Based on decode-and-forward strategy, we investigate the achievable outage probability of opportunistic relaying, in which there is a single source-destination transmission pair with the help of one of multiple relays. In two-hop scenario, based on adaptive decode-and forward strategy, the achievable diversity-multiplexing tradeoff with the knowledge of channel state amplitudes is analyzed. We show that opportunistic relaying has the same diversity-multiplexing tradeoff as the relaying with distributed space-time coding. We then present the expression in a closed form and find a suboptimal power allocation for the achievable outage probability of opportunistic relaying with decode-and-forward. Simulation results are provided to demonstrate the validity of our analysis and the applicability of the optimum results to select a single ‘good’ relay.
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基于译码转发的机会中继可实现的中断概率
基于译码转发策略,研究了单源-目的传输对在多个中继之一的帮助下可实现的机会中继中断概率。在两跳情况下,基于自适应译码和转发策略,分析了在信道状态幅值已知的情况下可实现的分集复用权衡。我们证明了机会中继与分布式空时编码中继具有相同的分集复用权衡。然后,我们以封闭形式给出了表达式,并找到了具有译码转发的机会继电器可实现的停机概率的次优功率分配。仿真结果证明了分析的有效性,以及优化结果在选择单个“好”继电器中的适用性。
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