协作无线网络的分布式差错概率最小化中继选择

Jing Liu, Kefei Lu, Xiaodong Cai
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引用次数: 1

摘要

Bletsas等人最近开发的分布式中继选择协议为实现合作分集提供了一种简单实用的方法。然而,对于采用译码转发(DF)方式发送信息的合作网络,除非每个中继都知道自己的译码是否正确,否则无法实现完全分集。此外,选择最佳继电器的准则并不是最优的,因为它不能使误差概率最小化。本文提出了一种适用于DF合作网络的分布式中继选择方法,该方法采用误差概率最小化准则来选择中继,可以在不需要中继知道自己是否正确译码的情况下实现完全分集。此外,我们还开发了一种混合合作协议,该协议不仅使用误差概率最小化准则选择最佳中继,而且从DF和放大转发(AF)中选择更好的中继方法。仿真结果表明,我们的两种协议都可以实现完全的分集,并且优于Bletsas等人开发的协议。此外,我们的混合协议比最小化错误概率的DF协议提供了更好的性能。1
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed error-probability-minimizing relay selection for cooperative wireless networks
The distributed relay selection protocol recently developed by Bletsas et. al. provides a simple and practical mean of achieving cooperative diversity. However, for cooperative networks where relays employ the decode-and- forward (DF) method to send information, it cannot achieve full diversity unless each relay knows whether it decodes correctly or not. Moreover, the criterion used to select the best relay is not optimal since it does not minimize error probability. In this paper, we develop a distributed relay selection method for DF cooperative networks, that uses an error-probability minimizing criterion to select relay and can achieve full diversity without requiring the relay to know whether it decodes correctly. Moreover, we also develop a hybrid cooperative protocol that not only selects the best relay using an error-probability minimizing criterion but also chooses a better relaying method from DF and amplify-and-forward (AF). Our simulations show that our both protocols can achieve full diversity and outperform the protocol developed by Bletsas et. al.. Furthermore, our hybrid protocol offers better performance than the error-probability- minimizing DF protocol. 1
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