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Optimal symbol misalignment estimation in asynchronous physical-layer network coding

机译:异步物理层网络编码中的最优符号失准估计

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In practical asynchronous physical-layer network coding (PNC) systems, the symbols from multiple transmitters to a common receiver may be misaligned. The good performance of an asynchronous PNC decoder hinges on accurate estimation of the symbol misalignment. This paper puts forth an optimal symbol misalignment estimator that considerably improves the estimation accuracy over prior schemes. Our scheme makes use of double baud-rate sampling of the received preambles consisting of Zadoff-Chu (ZC) sequences used by different transmitters. The sampling process is information-lossless because the double baud-rate samples capture all the information embedded in the continuous-time signal shaped by the assumed root-raised-cosine (RRC) pulse. The estimation consists of three steps: (i) cross-correlation of the double baud-rate samples with “interpolated double baud-rate ZC sequences” (ii) noise whitening; (iii) maximum likelihood (ML) estimation of the symbol misalignment. Extensive simulations show that the mean-square-error (MSE) performance of our estimator is superior to that of the baudrate estimator - e.g., for the RRC pulse with roll-off factor 1, our double baud-rate estimator yields improvement 8 dB over the baud-rate estimator. Furthermore, our double baudrate estimator yields square errors of less than 0.001 with 90% probability when the SNR is 10 dB in both AWGN and Rayleigh fading channels.
机译:在实际的异步物理层网络编码(PNC)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。异步PNC解码器的良好性能取决于对符号未对准的准确估计。提出了一种最优的符号未对准估计器,该估计器与现有方案相比大大提高了估计精度。我们的方案利用了接收到的前导码的双波特率采样,这些前导码由不同发射机使用的Zadoff-Chu(ZC)序列组成。采样过程是无信息丢失的,因为双波特率采样捕获了由假设的根升余弦(RRC)脉冲整形的连续时间信号中嵌入的所有信息。该估计包括三个步骤:(i)双波特率样本与“内插双波特率ZC序列”的互相关(ii)噪声白化; (iii)符号未对准的最大似然(ML)估计。大量的仿真表明,我们的估算器的均方误差(MSE)性能优于波特率估算器-例如,对于滚降系数为1的RRC脉冲,我们的双波特率估算器的性能提高了8 dB波特率估算器。此外,当AWGN和瑞利衰落信道中的SNR为10 dB时,我们的双波特率估计器产生的方差小于0.001,概率为90%。

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