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Ray-tracing-based time-domain wideband fractional delay beamforming for underwater acoustic positioning

机译:基于射线跟踪的时域宽带分数延迟波束成形用于水下声学定位

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摘要

Underwater acoustic positioning systems are essential for underwater vehicles positioning and navigation. In this paper, a time-domain wideband fractional delay beamforming (WFDB) technique is proposed to improve underwater localization capability of planar arrays. In our method, digital delay lines are combined with adaptive-finite-impulse-response filters to achieve high accuracy beamforming results and reduce the design burden of the WFDB systems. Further, the beamforming results are used in the ray-tracing method to eliminate curvature effect of sound rays caused by the inhomogeneity of water, and therefore improving the computation accuracy of target position. We further develop a hexagonal planar array of 30 elements to verify the WFDB method in an indoor experimental pool. The experimental results demonstrate that the proposed method could successfully mitigate the ray bending problem and accurately estimate the position of targets in low SNR condition.
机译:水下声学定位系统对于水下车辆的定位和导航至关重要。为了提高平面阵列的水下定位能力,提出了一种时域宽带分数延迟波束形成(WFDB)技术。在我们的方法中,数字延迟线与自适应有限冲激响应滤波器相结合,可实现高精度的波束成形结果,并减轻WFDB系统的设计负担。此外,波束形成结果被用于射线追踪方法中,以消除由水的不均匀性引起的声射线的曲率效应,因此提高了目标位置的计算精度。我们进一步开发了一个由30个元素组成的六边形平面阵列,以验证室内实验池中的WFDB方法。实验结果表明,该方法能够成功缓解射线弯曲问题,并能在低信噪比条件下准确估计目标位置。

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