Compress-forward (CF) relays can improve communication rates even when the relay cannot decode the source signal. Efficient implementation of CF is a topic of contemporary interest, in part because of its potential impact on wireless technologies such as cloud-RAN. There exists a gap between the performance of CF implementations in the high spectral efficiency regime and the corresponding information theoretic achievable rates. We begin by re-framing a dilemma causing this gap, and propose an approach for its mitigation. We utilize trellis coded quantization (TCQ) at the relay together with multi-level coding at the source and relay, in a manner that facilitates the calculation of bit LLRs at the destination for joint decoding. The contributions of this work include designing TCQ for end-to-end relay performance, since a distortion-minimizing TCQ is suboptimum. The reported improvements include a 1dB gain over prior results for PSK modulation.
翻译:即使在中继器无法解码源信号的情况下,压缩式中继器仍可提高通信率。高效实施中继器是一个当代感兴趣的议题,部分原因是它对云-RAN等无线技术的潜在影响。高光谱效率系统中的CF实施绩效与相应的信息理论可实现率之间存在差距。我们首先重新确定造成这一差距的两难处境,并提出缓解的方法。我们使用中继器的tellis编码式量化(TCQ)与源和中继的多级编码(TCQ),以便利在目标点计算部分LLLR进行联合解码。这项工作的贡献包括设计终端至终端中继性能的TCQ,因为扭曲式最小化的TCQ是次操作性。所报告的改进包括了PSK调制前结果的1DB收益。