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Design of Irregular Repeat-Accumulate Coded Physical-Layer Network Coding for Gaussian Two-Way Relay Channels

机译:高斯双向中继信道的不规则重复累积物理层网络编码设计

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摘要

This paper addresses the design of irregular repeat accumulate (IRA) codes for coded physical-layer network coding (PNC) for the binary-input Gaussian two-way relay channel, assuming perfect synchronization and equal received power at the relay. The design is based on a nontrivial extension of EXIT-chart based design. Specifically, we analyze the components of the IRA-PNC scheme and propose an approach to model the soft information exchanged between these components. Then, we develop upper and lower bounds on the extrinsic information transfer functions to characterize the iterative process of computing the network-coded information. Based on that, we construct optimized IRA codes to minimize the computation error at the relay. The optimized IRA-PNC has considerable performance improvement over the existing regular RA coded PNC. For a rate 3/4 code, as an example, we observed improvements of 2.6 dB, and the optimized IRA-PNC scheme is only about 1.7 dB away from the capacity upper bound of the Gaussian two-way relay channel.
机译:本文针对二进制输入高斯双向中继信道的编码物理层网络编码(PNC),提出了不规则重复累积(IRA)码的设计,假设中继具有完美的同步性和相等的接收功率。该设计基于基于EXIT图的设计的重要扩展。具体来说,我们分析了IRA-PNC方案的组成部分,并提出了一种对这些组成部分之间交换的软信息进行建模的方法。然后,我们对外部信息传递函数进行上限和下限的描述,以表征计算网络编码信息的迭代过程。基于此,我们构造了优化的IRA代码,以最大程度地减少继电器的计算误差。与现有的常规RA编码PNC相比,经过优化的IRA-PNC具有显着的性能提升。例如,对于速率为3/4的代码,我们观察到了2.6 dB的改进,并且优化的IRA-PNC方案距离高斯双向中继信道的容量上限只有1.7 dB。

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