Enabling Partial Forwarding by Decoding-Based One and Two-Stage Selective Cooperation

S. Valentin, T. Volkhausen, F. A. Onat, H. Yanikomeroglu, H. Karl
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引用次数: 9

Abstract

With selection decode-and-forward (SDF) relaying, an accurate forwarding decision is essential to avoid error propagation and achieve full cooperation diversity. The methods in literature are either based on CRC or SNR thresholds, both resulting in poor end-to-end performance in practical wireless scenarios with non-block fading and channel coding. We propose to improve performance by accurate and frequent adaptation with partial forwarding. To achieve this in channel-coded systems, we introduce a decoding-based forwarding decision at the relay and propose (1) minimum path difference (MPD) as a non-overhead and accurate decoding-based decision metric and (2) MPD-based SDF protocols with one and two decision stages. Our performance study validates that these protocols significantly improve SDF's end-to-end BER under realistic assumptions.
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通过基于解码的一阶段和两阶段选择合作实现部分转发
在选择译码转发(SDF)中继中,准确的转发决策是避免错误传播和实现充分合作分集的关键。文献中的方法要么基于CRC,要么基于信噪比阈值,这两种方法在实际无线场景下的端到端性能都很差,存在非分组衰落和信道编码。我们建议通过精确和频繁的局部转发自适应来提高性能。为了在信道编码系统中实现这一点,我们在中继中引入了基于解码的转发决策,并提出(1)最小路径差(MPD)作为无开销和精确的基于解码的决策度量,以及(2)基于MPD的SDF协议,具有一个和两个决策阶段。我们的性能研究验证了这些协议在现实假设下显著提高了SDF的端到端误码率。
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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