Channel Precoding for Compute and Forward Relaying in Two Way Relay Network Model

Jeyalakshmi Vijayarajan, S. T. Selvi
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引用次数: 1

Abstract

Physical layer Network Coding (PNC) is a promising strategy to improve the spectral efficiency in a relay-based wireless transmission. This paper employs lattice-based channel coding at the source nodes for better performance during Multiple Access Channel (MAC) phase transmission. The achievable transmission rate in various PNC relaying such as Decode and Forward (DF), Amplify and Forward (AF), and Compute and Forward (CF) for the Two Way Relay Network model (TWRN) is derived and simulated through MATLAB software and analyzed. The analysis shows that the rate performance of CF relaying outperforms other relaying techniques in the Additive White Gaussian Noise (AWGN) channel, but it degrades for the Rayleigh fading channel. To mitigate the fading effects, channel aware precoding technique is employed at source nodes, Bit Error Rate (BER) and Symbol Error Rate (SER) performance are analyzed for CF relaying, and Monte Carlo simulations are used to demonstrate the theoretical results. Channel precoding performance of CF relaying is compared with DF relaying.
双向中继网络模型中计算与前向中继的信道预编码
物理层网络编码(PNC)是在基于中继的无线传输中提高频谱效率的一种有前途的策略。本文在源节点采用基于网格的信道编码,以提高多路访问信道(MAC)阶段传输的性能。通过 MATLAB 软件对双向中继网络模型(TWRN)的解码和前向(DF)、放大和前向(AF)以及计算和前向(CF)等各种 PNC 中继的可实现传输速率进行了推导和仿真分析。分析表明,在加性白高斯噪声(AWGN)信道中,CF 中继的速率性能优于其他中继技术,但在瑞利衰落信道中,CF 中继的速率性能会下降。为了减轻衰落效应,在源节点采用了信道感知预编码技术,分析了 CF 中继的比特误码率(BER)和符号误码率(SER)性能,并使用蒙特卡罗模拟来证明理论结果。将 CF 中继的信道预编码性能与 DF 中继进行了比较。
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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