A Sound Ray Correction Method Based on Historical Data of Marine Acoustic Environment

Jian Li Jian Li, Zhen Zhang Jian Li, Yue Pan Zhen Zhang, Ming-Yu Gu Yue Pan, Guang-Jie Han Ming-Yu Gu
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Abstract

This paper proposes a new method for sound ray correction based on historical data, such as temperature, salinity, and depth of the sea area. The proposed method utilizes the Douglas-Peucker (D-P) algorithm to mine and extract features from sound velocity data processed using empirical orthogonal functions (EOF), completing the inversion of sound speed profiles (SSP). Compared to traditional EOF methods, an increase in the computational speed is achieved. Afterwards, this method quickly and linearly layers the processed sound speed profile, and uses the equivalent sound velocity method (ESVM) for sound ray equivalence to complete underwater target localization. Compared to the constant velocity method and the constant gradient method based on adaptive layering, the proposed method has higher accuracy and higher robustness to complex underwater environments. The effectiveness of the method is verified by applying it to the ultra-short baseline (USBL) positioning system.
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基于海洋声学环境历史数据的声射线校正方法
本文提出了一种基于海域温度、盐度和深度等历史数据的声射线校正新方法。该方法利用 Douglas-Peucker 算法(D-P)从使用经验正交函数(EOF)处理的声速数据中挖掘和提取特征,完成声速剖面(SSP)的反演。与传统的 EOF 方法相比,该方法提高了计算速度。随后,该方法对处理后的声速剖面进行快速线性分层,并利用等效声速法(ESVM)进行声射线等效,完成水下目标定位。与基于自适应分层的恒速法和恒梯度法相比,所提出的方法具有更高的精度和对复杂水下环境的鲁棒性。通过将该方法应用于超短基线(USBL)定位系统,验证了该方法的有效性。
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