OFDM调制物理层网络编码的Turbo均衡

Jie Huang, Zhaohui Wang, Shengli Zhou, Zhengdao Wang
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引用次数: 16

摘要

本文考虑了一种实用的正交频分复用(OFDM)调制和低密度校验(LDPC)信道编码双向中继系统,该系统采用物理层网络编码(PLNC),其中两个终端a和B希望借助可配置多个接收天线的中继R相互交换信息。采用正交频分复用(OFDM)作为调制方案来解决PLNC中的同步问题,并考虑了载波间干扰(ICI)的双选择信道。该系统的关键过程是根据两个终端的信道编码信号叠加计算中继处的网络编码发送码字。与已有的非迭代接收机设计不同,本文考虑的是迭代接收机设计。我们提出了两种turbo均衡接收器,一种是传统的迭代分离检测和解码(I-SDD),另一种是基于最近开发的PLNC估计方案。分别采用高斯消息传递(GMP)和和积算法(SPA)实现ici感知均衡和信道解码。我们通过数值模拟发现,当使用多个接收天线时,I-SDD接收器的性能可以赶上最先进的基于plnc的接收器。ISDD接收机的一个很有前途的特点是其信道解码复杂度远低于基于plnc的接收机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Turbo equalization for OFDM modulated physical layer network coding
In this paper we consider a practical orthogonal frequency division multiplexing (OFDM) modulated and low-density parity-check (LDPC) channel coded two-way relay system employing physical-layer network coding (PLNC), where two terminals A and B desire to exchange information with each other with the help of a relay R which can be equipped with multiple receive antennas. Orthogonal frequency division multiplexing (OFDM) is adopted as the modulation scheme to resolve the synchronization problem in PLNC and doubly selective channels with intercarrier interference (ICI) are considered. The critical process in such a system is the calculation of the network-coded transmit codeword at the relay on basis of the superimposed channel-coded signals of the two terminals. Different from existing works on non-iterative receiver design, we here consider iterative receiver design. We propose two turbo equalization receivers, one is the conventional iterative separate detection and decoding (I-SDD), and the other one is based on a recently developed estimation scheme for PLNC. Gaussian message passing (GMP) and sum-product algorithm (SPA) are used for ICI-aware equalization and channel decoding respectively. We find through numerical simulations that the performance of the I-SDD receiver can catch up with that of the state-of-the-art PLNC-based receiver when more than one receive antennas are used. One promising feature about the ISDD receiver is that the channel decoding complexity is much lower than that of the PLNC-based receiver.
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