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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Energy-Efficient Relay Selection of Cooperative HARQ Based on the Number of Transmissions Over Rayleigh Fading Channels
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Energy-Efficient Relay Selection of Cooperative HARQ Based on the Number of Transmissions Over Rayleigh Fading Channels

机译:基于瑞利衰落信道传输次数的协作式HARQ的节能中继选择

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摘要

Cooperative hybrid automatic retransmission request (C-HARQ) is a simple and effective method for wireless communication. Since its performance largely depends on the selection of a relevant relay, the design of an appropriate relay selection scheme is very important. Although various works have been performed on this topic, most of them did not take into account both the “not memoryless” and multiple retransmission characteristics of C-HARQ, resulting in the loss of achievable performance. In this paper, we propose a novel cooperative relay selection scheme in a distributed manner called transmission number relaying (TNR) to simultaneously reduce the outage probability and increase the energy efficiency by utilizing the features of C-HARQ. The TNR scheme determines a single relay based on the estimated number of transmissions, which is calculated from the channel condition. Using these numbers instead of just the channel condition improves the outage probability and reduces the total consumed energy. The exact probability of the number of transmissions at each relay and the outage probability are analyzed, and the numerical results show that the proposed scheme significantly improves the outage probability and reduces the total consumed energy. In addition, when the number of available relays is small, the proposed scheme achieves high energy efficiency.
机译:协作式混合自动重发请求(C-HARQ)是一种简单有效的无线通信方法。由于其性能在很大程度上取决于相关继电器的选择,因此设计合适的继电器选择方案非常重要。尽管已针对此主题进行了各种工作,但大多数工作都未同时考虑到C-HARQ的“非无记忆”和多重重传特性,从而导致可实现的性能下降。在本文中,我们提出了一种新颖的分布式中继协作选择方案,称为传输数中继(TNR),以利用C-HARQ的特性同时降低中断概率并提高能源效率。 TNR方案根据估计的传输次数确定单个中继,该估计的传输次数是根据信道条件计算得出的。使用这些数字而不只是信道条件可以提高中断的可能性,并减少总的能耗。分析了每个中继的传输次数的准确概率和中断概率,数值结果表明,该方案显着提高了中断概率,降低了总能耗。另外,当可用继电器的数量少时,所提出的方案实现了高能量效率。

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