双向中继网络的分散空时分组编码

F. Verde, A. Scaglione
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引用次数: 9

摘要

采用空时分组编码(STBC)技术的合作分集方案被提出用于无线网络,通过允许分布在空间中的多个中继节点协助给定终端对之间的传输,以增加系统容量和覆盖范围。传统的中继策略,如放大转发(A&F)和解码转发(D&F),是通过考虑通过中继的单向通信来设计的,这被称为单向中继信道。最近,有研究表明,当两个方向上都有一致的流量时,使用双向中继协议(它明确地说明了数据流的双向性质)可以潜在地提高网络性能。本文利用随机STBC(一种最初为D&F单向中继信道开发的编码规则),提出了A&F和D&F中继的完全分散协作通信方案,其中每个中继都不知道其他节点正在使用的有效STBC和合作站点的数量。数值结果突出了所提出的双向中继方案与单向中继方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decentralized space-time block coding for two-way relay networks
Cooperation diversity schemes employing space-time block coding (STBC) techniques have been proposed for wireless networks to increase systems capacity and coverage, by allowing multiple relay nodes distributed in space to assist the transmission between a given pair of terminals. Conventional relaying strategies, such as amplify-and-forward (A&F) and decode-and-forward (D&F), are designed by considering unidirectional communications via relays, which are referred to as one-way relay channels. Recently, it has been shown that, when there is consistent traffic in both directions, the use of two-way relaying protocols, which explicitly account for the bidirectional nature of the data flow, can potentially improve the network performance. In this paper, capitalizing on randomized STBC, a coding rule which has been originally developed for D&F one-way relay channels, fully decentralized cooperative communication schemes are proposed for both A&F and D&F relays, where each relay is unaware of both the effective STBC being employed by the other nodes and the number of cooperating stations. Numerical results are provided to highlight the effectiveness of the proposed two-way relaying schemes in comparison to their one-way counterparts.
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