Distance properties and performance of physical layer network coding with binary linear codes for Gaussian two-way relay channels

Tao Yang, I. Land, Tao Huang, Jinhong Yuan, Zhuo Chen
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引用次数: 1

Abstract

We investigate joint channel and physical layer network coding (CPNC) for Gaussian two-way relay channels. The two users' messages are encoded using the same binary linear code and are transmitted simultaneously with equal power. At the relay node, the network-coded message is recovered directly from the received signal sequence, and is then broadcast to the users. We propose a new methodology to explicitly find the distance spectrum of the coding scheme. Based on that, we analyze the error probability at the relay and derive an asymptotically tight performance bound (for high SNRs). We show that, with a general binary linear code, the CPNC scheme is subject to an asymptotic SNR loss of approximately ln 2 relative to the single-user case, regardless of the coding rate. Numerical results show that our analysis matches very well with the performance of the CPNC scheme.
高斯双向中继信道用二进制线性码编码物理层网络的距离特性和性能
研究了高斯双向中继信道的联合信道和物理层网络编码(CPNC)。两个用户的消息使用相同的二进制线性码进行编码,并以相同的功率同时传输。在中继节点上,网络编码的消息直接从接收到的信号序列中恢复,然后广播给用户。我们提出了一种新的方法来明确地找到编码方案的距离谱。在此基础上,我们分析了继电器的误差概率,并推导了一个渐近紧密的性能界(对于高信噪比)。我们证明,对于一般的二进制线性码,CPNC方案相对于单用户情况,无论编码率如何,信噪比损失约为ln 2。数值结果表明,我们的分析与CPNC方案的性能非常吻合。
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