Analog network coded modulation with maximum Euclidean distance denoising-and-mapping

Zhijiang Yu, Wei Chen, Xin Guo, Xiang Chen, Chen Sun
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引用次数: 1

Abstract

Physical-layer network coding (PNC) holds the great potential of improving the power efficiency and the spectral efficiency for its two-stage transmission scheme. In this paper, we investigate the joint network-coded modulation design of the two stages. A universal modulation framework is built, referred to as Analog Network-Coded Modulation Strategy, which is more general than the former modulation design mechanism. More explicitly, we propose a joint design criterion for the modulation and the network coding to guarantee the forwarding reliability at the relay node. That is, the neighboring superposed constellation points, among which the Euclidean distance (ED) is less than a given threshold, are constrained to be mapped to an identical constellation point for broadcasting. This yields a non-convex polynomial optimization problem, for which we propose a joint modulation design algorithm, termed as Enhanced Semidefinite Relaxation (Enhanced-SDR) Algorithm, based on the SDR technique. Simulation results will demonstrate the effectiveness of the proposed algorithm by comparing symbol error rate (SER) performance with the exhaustive search and the existing modulation design methods.
模拟网络编码调制与最大欧氏距离去噪和映射
物理层网络编码(PNC)的两级传输方案在提高功率效率和频谱效率方面具有很大的潜力。在本文中,我们研究了两个阶段的联合网络编码调制设计。建立了一种通用的调制框架,称为模拟网络编码调制策略,它比以前的调制设计机制更具通用性。为了保证中继节点转发的可靠性,提出了调制和网络编码的联合设计准则。即约束相邻的重叠星座点映射到同一星座点上进行广播,且它们之间的欧氏距离(ED)小于给定阈值。这产生了一个非凸多项式优化问题,为此我们提出了一种基于SDR技术的联合调制设计算法,称为增强半定松弛(Enhanced-SDR)算法。仿真结果将通过比较符号误差率(SER)与穷举搜索和现有调制设计方法的性能来证明所提算法的有效性。
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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