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Matched Field Processing Based on Least Squares with a Small Aperture Hydrophone Array

机译:基于最小二乘和小孔径水听器阵列的匹配场处理

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摘要

The receiver hydrophone array is the signal front-end and plays an important role in matched field processing, which usually covers the whole water column from the sea surface to the bottom. Such a large aperture array is very difficult to realize. To solve this problem, an approach called matched field processing based on least squares with a small aperture hydrophone array is proposed, which decomposes the received acoustic fields into depth function matrix and amplitudes of the normal modes at the beginning. Then all the mode amplitudes are estimated using the least squares in the sense of minimum norm, and the amplitudes estimated are used to recalculate the received acoustic fields of the small aperture array, which means the recalculated ones contain more environmental information. In the end, lots of numerical experiments with three small aperture arrays are processed in the classical shallow water, and the performance of matched field passive localization is evaluated. The results show that the proposed method can make the recalculated fields contain more acoustic information of the source, and the performance of matched field passive localization with small aperture array is improved, so the proposed algorithm is proved to be effective.
机译:接收器水听器阵列是信号的前端,在匹配场处理中起着重要作用,该场通常覆盖从海面到海底的整个水柱。如此大的孔径阵列很难实现。为了解决这个问题,提出了一种基于最小二乘法的小孔径水听器阵列的匹配场处理方法,该方法首先将接收到的声场分解为深度函数矩阵和正常模式的振幅。然后,在最小范数的意义上,使用最小二乘方估计所有模式振幅,并将估计的振幅用于重新计算小孔径阵列的接收声场,这意味着重新计算的声场包含更多的环境信息。最后,在经典的浅水中进行了三个小孔径阵列的数值实验,并对匹配场的无源定位性能进行了评估。结果表明,该方法可使重新计算的声场包含更多的声源信息,并提高了小孔径阵列匹配场的无源定位性能,证明了该算法的有效性。

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