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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >End-to-End Joint Antenna Selection Strategy and Distributed Compress and Forward Strategy for Relay Channels
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End-to-End Joint Antenna Selection Strategy and Distributed Compress and Forward Strategy for Relay Channels

机译:中继信道的端到端联合天线选择策略和分布式压缩转发策略

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Multihop relay channels use multiple relay stages, each with multiple relay nodes, to facilitate communication between a source and destination. Previously, distributed space-time codes were proposed to maximize the achievable diversity-multiplexing tradeoff; however, they fail to achieve all the points of the optimal diversity-multiplexing tradeoff. In the presence of a low-rate feedback link from the destination to each relay stage and the source, this paper proposes an end-to-end antenna selection (EEAS) strategy as an alternative to distributed space-time codes. The EEAS strategy uses a subset of antennas of each relay stage for transmission of the source signal to the destination with amplifying and forwarding at each relay stage. The subsets are chosen such that they maximize the end-to-end mutual information at the destination. The EEAS strategy achieves the corner points of the optimal diversity-multiplexing tradeoff (corresponding to maximum diversity gain and maximum multiplexing gain) and achieves better diversity gain at intermediate values of multiplexing gain, versus the best-known distributed space-time coding strategies. A distributed compress and forward (CF) strategy is also proposed to achieve all points of the optimal diversity-multiplexing tradeoff for a two-hop relay channel with multiple relay nodes.
机译:多跳中继信道使用多个中继阶段,每个中继阶段都有多个中继节点,以促进源和目标之间的通信。以前,人们提出了分布式时空码,以最大程度地实现分集复用权衡。但是,它们不能达到最佳分集复用权衡的所有要点。在存在从目的地到每个中继级和源的低速率反馈链路的情况下,本文提出了一种端到端天线选择(EEAS)策略,以替代分布式时空码。 EEAS策略使用每个中继级的天线子集将源信号传输到目的地,并在每个中继级进行放大和转发。选择这些子集以使它们在目的地处最大化端到端的相互信息。与最著名的分布式空时编码策略相比,EEAS策略实现了最佳分集复用权衡(对应于最大分集增益和最大复用增益)的转折点,并在复用增益的中间值处实现了更好的分集增益。还提出了一种分布式压缩和转发(CF)策略,以实现具有多个中继节点的两跳中继信道的最佳分集复用折衷的所有点。

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