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基于多普勒不变信号的稀疏信道参数估计

Sparse Channel Parameter Estimation Based on Doppler-Invariant Signal

  • 摘要: 当水声信道同时存在多普勒效应与多径效应时,不同传播路径的多普勒因子存在显著差异,通信系统需要对每条路径的时延和多普勒扩展参数进行联合估计。然而现有方法在计算复杂度与估计精度之间存在难以兼顾的矛盾,因此本文提出一种基于多普勒不变信号的信道参数估计方法。相较于双曲调频信号,多普勒不变信号具有良好的多普勒不变特性,而且其相关函数具有更窄的主瓣宽度和更低的旁瓣峰值。本文所提出的算法在每次迭代中对两个扫频方向相反的多普勒不变信号作互相关,并通过加窗和群时延分析对相关峰位置进行精确校正,进而获得各路径参数的精确估计。数值仿真和湖试结果表明,该方法在降低计算复杂度的同时,能够有效提升信道参数估计的准确性。

     

    Abstract: When the underwater acoustic channel is simultaneously affected by Doppler shift and multipath effects, the Doppler spreads of different propagation paths exhibit varying degrees of deviation; therefore, communication systems need to jointly estimate the delay and Doppler spread parameters of each path. However, existing methods face a difficult trade-off between computational complexity and estimation accuracy. Therefore, this paper proposes a channel parameter estimation method based on Doppler-invariant signals. Compared with hyperbolic frequency-modulated (HFM) signals, Doppler-invariant signals not only exhibit superior Doppler invariance but also possess a narrower main lobe and lower sidelobes in their autocorrelation functions. The algorithm proposed in this paper performs cross-correlation operations on two Doppler-invariant signals with opposite chirp directions in each iteration, followed by windowing and group-delay analysis to precisely align the correlation peaks—thereby yielding accurate estimates of the delay and Doppler spread for each propagation path. Numerical simulations and lake trials demonstrate that this method reduces computational complexity while significantly improving the accuracy of channel parameter estimation.

     

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