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Cross-range imaging of a cooperative source using passive inverse synthetic aperture technique

机译:使用被动逆合成孔径技术对合作源进行跨范围成像

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In recent literature on underwater acoustics, great emphasis has been placed on the impact of anthropogenic sound on marine life. The monitoring and reduction of noise emissions from submarines and ships has become an integral aspect in manufacture and maintenance processes. The sound produced by large ships is known to contain tonals, which are generated by various machines operating on the marine vessel. The objective of this paper is to perform a spatial mapping of the tonal sources in cross-range by employing the concept of passive inverse synthetic aperture. A single stationary sensor observes the sound emitted by the cooperative source under uniform linear motion at close range over finite observation duration. It is assumed that the velocity and the range at the closest point of approach of the moving vessel, modeled as a distributed source, are known accurately. The emitted tonals undergo a time-varying Doppler shift due to the relative motion of the source as compared to the stationary sensor. We propose a two-step algorithm for cross-range imaging of the cooperative source, which involves the estimation of the tonal rest frequencies followed by the estimation of the time at the closest point of approach corresponding to each of the estimated tonal frequencies. The prominent tonal frequencies are estimated using a novel one-dimensional optimization based on time warping of the received signal. Then, matched filters are designed to determine the time at the closest point of approach corresponding to each of the Doppler shifted tonal frequencies, which indicate the location of the tonal sources relative to each other in the cross-range. The proposed algorithm is also capable of distinguishing two or more sources that are spatially displaced, but emit the same tonal frequency. The issues related to the design of the matched filters in the proposed algorithm and the resolution achievable in the cross-range are discussed. Simulations are used to assess the perf- rmance of the proposed algorithm in presence of noise. The proposed algorithm is also applied on an actual underwater recording.
机译:在有关水下声学的最新文献中,已将重点放在人为声音对海洋生物的影响上。监视和减少潜艇和船舶的噪声排放已成为制造和维护过程中不可或缺的一部分。已知大船产生的声音包含音调,这些音调是由在船上运行的各种机器产生的。本文的目的是通过采用被动逆合成孔径的概念在跨范围内对音源进行空间映射。单个固定传感器在有限的观察时间内,以均匀的线性运动在近距离内观察协同声源发出的声音。假设准确地知道了建模为分布式源的移动船只接近的最接近点的速度和范围。与固定传感器相比,由于源的相对运动,发射的音调会发生时变的多普勒频移。我们提出了一种用于协作源跨范围成像的两步算法,其中涉及音调静止频率的估计,然后是与每个估计的音调频率对应的最接近点的时间估计。基于接收信号的时间扭曲,使用新颖的一维优化来估计突出的音调频率。然后,设计匹配的滤波器以确定与每个多普勒频移的音调频率相对应的最接近点的时间,这些时间指示音调源在跨范围内相对于彼此的位置。所提出的算法还能够区分两个或多个在空间上移位但发出相同音调频率的信号源。讨论了与所提出算法中的匹配滤波器设计有关的问题以及在跨范围内可获得的分辨率。仿真用于评估在存在噪声的情况下所提出算法的性能。所提出的算法还应用于实际的水下记录。

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