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Joint Estimation of Time Delay, Doppler Velocity and Doppler Rate of Unknown Wideband Signals

机译:未知宽带信号的时延,多普勒速度和多普勒速率的联合估计

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In this work, we consider the joint estimation of time delay, Doppler velocity and Doppler rate of unknown wideband signals, in the sense that the time delay migration over time and Doppler shift migration over signal frequency are non-ignorable. By partitioning the received signals into short-time segments, a novel wideband signal model is presented and the maximum likelihood (ML) estimator is derived. With better compensation of parameter migrations, higher estimation accuracy might be achieved through the derived ML estimator. The signal-specific Cramer-Rao lower bound analysis for the wideband cases is also presented. To avoid the multidimensional search of the ML estimator, a fast estimation algorithm based on the time-reverse transform and the second-order Keystone transform is proposed. In this fast estimation algorithm, these parameters could be estimated through successive one-dimensional searches. Simulation results show that the fast estimation algorithm could achieve comparable performance with the ML estimator with a much lower computational complexity.
机译:在这项工作中,我们考虑了未知宽带信号的时延,多普勒速度和多普勒速率的联合估计,这是因为随时间的时延迁移和在信号频率上的多普勒频移迁移是不可忽略的。通过将接收到的信号划分为短时间段,提出了一种新颖的宽带信号模型,并推导了最大似然(ML)估计器。通过对参数迁移进行更好的补偿,可以通过导出的ML估计器获得更高的估计精度。还介绍了针对宽带情况的信号特定Cramer-Rao下限分析。为了避免ML估计器的多维搜索,提出了一种基于时间逆变换和二阶Keystone变换的快速估计算法。在这种快速估计算法中,可以通过连续的一维搜索来估计这些参数。仿真结果表明,该快速估计算法能够以较低的计算复杂度与ML估计器实现相当的性能。

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