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Joint design of LDPC and Physical-layer Network Coding for bi-directional relay system in the presence of insufficient timing synchronization

机译:时序同步不足的双向中继系统的LDPC和物理层网络编码的联合设计

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Physical-layer Network Coding (PNC) has shown its power for improving the throughput effectively of the bi-directional relay system. Most of the existing PNC schemes are carried out under the assumption of perfect synchronization. In this paper, we provide some new insights into the joint design of Low-Density Parity-Check (LDPC)-coded and PNC for asynchronous bi-directional relay system with BPSK signaling. In particular, a novel LDPC and PNC joint design method is proposed for mitigating the performance degradation caused by the different timing offsets between relay and two source nodes. Simulation results show that the proposed joint design of LDPC and PNC scheme outperforms traditional method for bi-directional relay system in the presence of insufficient timing synchronization.
机译:物理层网络编码(PNC)已显示出其强大功能,可以有效地提高双向中继系统的吞吐量。现有的大多数PNC方案都是在完全同步的假设下执行的。在本文中,我们为采用BPSK信号的异步双向中继系统的低密度奇偶校验(LDPC)编码和PNC的联合设计提供了一些新见解。特别地,提出了一种新颖的LDPC和PNC联合设计方法,以减轻由于中继器和两个源节点之间的不同定时偏移而导致的性能下降。仿真结果表明,在时序同步不足的情况下,所提出的LDPC和PNC方案的联合设计优于传统的双向中继系统方法。

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