Compress-and-Forward Relaying Over Parallel Gaussian Channels

Woohyuk Chang, S. Kotagiri, J. N. Laneman, Sae-Young Chung, Y.H. Lee
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引用次数: 8

Abstract

We propose a compress-and-forward (CF) strategy for relaying over parallel Gaussian channels. The proposed CF strategy compresses received signals at the relay under a constraint on the product of their allowable distortions and forwards them to the destination over all subchannels. Then, power allocation over all subchannels at both the source and the relay and bit allocation for compressing received signals at the relay are jointly optimized under a total power constraint on each node. The proposed CF strategy is shown to generalize the previous CF strategy which compresses the received signal from the i-th. incoming subchannel and forwards it only through the i-th outgoing subchannel. We show if for a good incoming link at the relay, its corresponding outgoing link is also good enough, both CF strategies have similar performances. Otherwise, the gap between their performances becomes significant.
并行高斯信道上的压缩转发中继
我们提出了一种并行高斯信道中继的压缩转发(CF)策略。提出的CF策略在中继接收到的信号的允许失真积的约束下进行压缩,并通过所有子信道将其转发到目的地。然后,在每个节点的总功率约束下,共同优化源端和中继端所有子信道的功率分配以及中继端接收信号的压缩位分配。本文提出的CF策略是对先前的CF策略的推广,该策略将接收到的信号从第i层压缩到第i层。传入子通道,并仅通过第i个传出子通道转发。我们证明,如果中继上一个好的入站链路,其对应的出站链路也足够好,两种CF策略具有相似的性能。否则,他们的表现之间的差距就会变得很大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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