无线译码转发中继网络中的协同混合ARQ

Wei Ni, Zhuo Chen, I. Collings
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引用次数: 3

摘要

无线解码转发(DF)中继网络由于多跳传播而遭受严重的延迟。当使用混合ARQ (HARQ)时,由于在给定时间内不成功数据包的重传次数减少,延迟导致单个HARQ进程的整体降级。我们提出了两种新的分布式协作HARQ协议,不仅减少了延迟,而且优化了正向和反向DF链路的吞吐量。利用来自多个数据包的额外选择分集来补偿反向DF链路中功率较低的源所造成的吞吐量损失。基于第一跳接收质量,每个中继站(RS)独立转发数据包,从目的站的角度来看,有效地形成了三种具有最高瞬时吞吐量的协同中继模式之一:空间复用(SM)、时空发射分集(STTD)和单播(UC)。可以用最小的延迟实现最大的吞吐量。所提出的方法在最佳频谱效率和显著降低延迟方面的优越性已被证明。与集中式方法相比,在高信噪比(SNR)下,降低了高达40%,并且单个HARQ过程的吞吐量也因此增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooperative Hybrid ARQ in Wireless Decode-and-Forward Relay Networks
Wireless decode-and-forward (DF) relay networks suffer from severe latency due to multi-hop propagation. When hybrid ARQ (HARQ) is employed, the latency leads to the throughout degradation of individual HARQ processes because of the decreased number of retransmissions of unsuccessful packets in a given time. We propose two new distributed cooperative HARQ protocols to not only reduce latency but also optimize throughput in both forward and reverse DF links. Additional selection diversity from multiple packets is exploited to compensate for the throughput loss stemming from the less powerful source in the reverse DF link. Based on the 1st hop reception quality, each relay station (RS) independently forwards the packet in such a manner that, from the perspective of the destination, one of the three cooperative relaying modes is effectively formed with the highest instantaneous throughput: spatial multiplexing (SM), space-time transmit diversity (STTD) and unicast (UC). The maximal throughput can be achieved with minimal latency. The superiority of the proposed approaches has been demonstrated in terms of the optimal spectral efficiency and significant reduction in latency. Compared to the centralized approaches, the reduction is up to 40% at high signal-to-noise ratio (SNR) and the throughput of individual HARQ processes increases as a result.
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