使用二进制CPFSK调制的非相干物理层网络编码

M. Valenti, D. Torrieri, Terry Ferrett
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引用次数: 26

摘要

物理层网络编码是一种通过双向中继信道进行通信的高吞吐量技术,双向中继信道由两个终端组成,两个终端通过中间中继进行通信。消息交换开始于两个终端同时向中继发送二进制数据序列。中继确定序列的模-2和,它调制并广播到终端。由于每一个终端都知道自己传输的信息,所以它可以通过从广播信号中减去自己的信息来确定另一个终端传输的信息。先前关于物理层网络编码主题的工作假设两个终端传输的信号以完全对齐的相位到达中继,允许相干接收。本文放宽了相位对准的假设,考虑了二元连续相移频键控信号的非相干接收。对于不同数量的信道状态信息,给出了中继接收器的推导,并提供了显示所提出的系统在没有外部纠错码和具有外部涡轮码的情况下的错误性能的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Noncoherent physical-layer network coding using binary CPFSK modulation
Physical-layer network coding is a high-throughput technique for communicating over the two-way relay channel, which consists of two terminals that communicate exclusively via an intermediate relay. An exchange of messages begins with both terminals transmitting binary data sequences simultaneously to the relay. The relay determines the modulo-2 sum of the sequences, which it modulates and broadcasts to the terminals. Since each terminal knows the information it transmitted, it can determine the information transmitted by the other terminal by subtracting its own information from the broadcast signal. Prior work on the topic of physical-layer network coding has assumed that the signals transmitted by the two terminals arrive at the relay with perfectly aligned phases, permitting coherent reception. In this paper, we relax the assumption of aligned phases and consider noncoherent reception of binary continuous-phase frequency-shift keying signals. A derivation of the relay receiver is given for varying amounts of channel state information, and results are provided showing the error performance of the proposed system without an outer error-correcting code and with an outer turbo code.
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