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Asynchronous Physical-Layer Network Coding: Symbol Misalignment Estimation and Its Effect on Decoding

机译:异步物理层网络编码:符号未对准估计及其对解码的影响

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In asynchronous physical-layer network coding (APNC) systems, the symbols from multiple transmitters to a common receiver may be misaligned. Knowledge of the amount of symbol misalignment, hence its estimation, is important to PNC decoding. This paper addresses the problems of symbol-misalignment estimation and optimal PNC decoding given the misalignment estimate, assuming the APNC system uses the root-raised-cosine pulse to carry signals (RRC-APNC). Our contributions are as follows. First, we put forth an optimal symbol-misalignment estimator that makes use of double baud-rate samples. Second, we devise optimal RRC-APNC decoders in the presence of non-exact symbol-misalignment estimates. In particular, we show how to whiten the colored noise in the double baud-rate samples to simplify the design of optimal decoders. Third, we investigate the decoding performance of various estimation-and-decoding schemes for RRC-APNC. Extensive simulations show that: 1) our double baud-rate estimator yields substantially more accurate symbol-misalignment estimates than the baud-rate estimator does; the mean square error gains are up to 8 dB and 2) an overall estimation-and-decoding scheme in which both estimation and decoding are based on double baud-rate samples yields much better performance than other schemes. Compared with a scheme in which both estimation and decoding are based on baud-rate samples, the double baud-rate sampling scheme yields 4.5 dB gains on symbol error rate performance in an additive white Gaussian noise channel, and 2 dB gains on packet error rate performance in a Rayleigh fading channel.
机译:在异步物理层网络编码(APNC)系统中,从多个发送器到一个公共接收器的符号可能未对齐。知道符号未对准的数量及其估计,对于PNC解码很重要。本文假设APNC系统使用根升余弦脉冲来承载信号(RRC-APNC),从而解决了给定失准估计的符号失准估计和最佳PNC解码的问题。我们的贡献如下。首先,我们提出了一种利用双波特率采样的最优符号未对准估计器。其次,在存在不精确的符号未对准估计的情况下,我们设计了最佳的RRC-APNC解码器。特别是,我们展示了如何使双波特率样本中的彩色噪声变白,以简化最佳解码器的设计。第三,我们研究了用于RRC-APNC的各种估计和解码方案的解码性能。大量的仿真表明:1)我们的双重波特率估计器比波特率估计器产生的符号失准估计要准确得多;均方误差增益高达8 dB; 2)总体估计和解码方案(其中,估计和解码均基于双波特率样本)产生的性能要比其他方案好得多。与其中估计和解码均基于波特率采样的方案相比,双波特率采样方案在加性高斯白噪声信道中的符号误码率性能提高了4.5 dB,而分组误码率则提高了2 dB在瑞利衰落信道中的性能

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