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Short pulse multi-frequency phase-based time delay estimation

机译:基于短脉冲多频相位的时延估计

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摘要

An approach for time delay estimation, based on phase difference detection, is presented. A multiple-frequency short continuous wave pulse is used to solve the well-known phase ambiguity problem when the maximum distance exceeds a full wavelength. Within an unambiguous range defined with the lowest frequency difference between components, the corresponding phase difference is unique and any distance within this range can be determined. Phase differences between higher frequency components are used to achieve a finer resolution. The concept will be presented and the effectiveness of the approach will be investigated through theoretical and practical examples. The method will be validated using underwater acoustic measurements, simulating noisy environments, demonstrating resolutions better than a 50th of a wavelength, even in the presence of high levels (-5 dB) of additive Gaussian noise. Furthermore, the algorithm is simple to use and can be easily implemented, being based on phase detection using the discrete Fourier transform.
机译:提出了一种基于相位差检测的时延估计方法。当最大距离超过全波长时,多频短连续波脉冲用于解决众所周知的相位模糊问题。在用组件之间的最低频率差定义的明确范围内,相应的相位差是唯一的,并且可以确定此范围内的任何距离。较高频率分量之间的相位差用于获得更高的分辨率。将通过理论和实践示例介绍该概念,并研究该方法的有效性。该方法将使用水下声学测量,模拟嘈杂的环境进行验证,即使在存在高电平(-5 dB)附加高斯噪声的情况下,其分辨率也要优于波长的50分之一。此外,基于使用离散傅立叶变换的相位检测,该算法易于使用且易于实现。

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