Performance analysis for Physical-Layer Network Coding with Hierarchical Modulation

Meng Tang, Jianhua Chen, Yufeng Zhang, Yan Zhang
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引用次数: 5

Abstract

In practice, channel state is complicated and changing in the mobile communication environment. For the downlink asymmetric Two-Way Relay Channels (TWRC), we presented a joint Hierarchical Modulation and Physical-Layer Network Coding (HM-PNC) scheme. Firstly, a two-way relay communication system model consisting of the source and relay nodes using 2/4-QAM hierarchical modulation is constructed. Secondly, the Physical layer Network Coding (PNC) demodulation and mapping rules at the relay node is presented, the formula for calculating the end-to-end Bit Error Rate (BER) under the Additive White Gaussian Noise (AWGN) is derived as well. Finally, the simulation results are presented which verify the theoretical analysis results. Compared with PNC using the traditional 4QAM modulation technique, the advantage of the hierarchical modulation is made use of to ensure a higher data rate in the better link and to take into account the reliability of worse link.
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分层调制物理层网络编码的性能分析
在实际应用中,在移动通信环境中,信道状态是复杂多变的。针对下行非对称双向中继信道(TWRC),提出了一种分层调制和物理层网络编码(HM-PNC)联合方案。首先,采用2/4-QAM分层调制,构建了由源节点和中继节点组成的双向中继通信系统模型;其次,给出了中继节点的物理层网络编码(PNC)解调和映射规则,推导了加性高斯白噪声(AWGN)下端到端误码率(BER)的计算公式。最后给出了仿真结果,验证了理论分析结果。与采用传统4QAM调制技术的PNC相比,利用了分层调制的优势,既保证了较好链路上较高的数据速率,又兼顾了较差链路上的可靠性。
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