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A Combined Ray Tracing Method for Improving the Precision of the USBL Positioning System in Smart Ocean

机译:一种提高智能海洋中USBL定位系统精度的组合射线追踪方法

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The ultra-short baseline positioning system (USBL) has the advantages of flexible application and easy installation, and it plays an extremely important role in the underwater positioning and communication. The error of the USBL in underwater positioning is mainly caused by a ranging error due to ray tracing, a phase difference error of the USBL, and acoustic noise in the underwater communication. Most of these errors are related to the changes in the sound speed during its propagation through the ocean. Therefore, when using the USBL for underwater detection, it is necessary to correct the sound speed profile in the detection area and optimize the ray tracing. Taking into account the actual conditions, this paper aims at correcting the model of underwater sound speed propagation and improving the tracking method of sound lines when the marine environment in the shallow sea area changes. This paper proposes a combined ray tracing method that can adaptively determine whether to use the constant sound speed ray tracing method or the equal gradient ray tracing method. The theoretical analysis and simulation results show that the proposed method can effectively reduce the error of slant distance in USBL compared with the traditional acoustic tracking method and the constant sound speed ray tracing method. The proposed sound ray correction algorithm solves the contradiction between the number of iterations and the reduction of positioning error and has engineering application value.
机译:超短基线定位系统(USBL)具有应用灵活,易于安装的优点,在水下定位和通信中发挥着极其重要的作用。水下定位中USBL的误差主要是由于射线追踪引起的测距误差,USBL的相位差误差以及水下通信中的噪声所引起的。这些误差中的大多数与声波在海洋中传播期间的声速变化有关。因此,当使用USBL进行水下检测时,有必要校正检测区域中的声速分布并优化射线追踪。考虑到实际情况,本文旨在修正水下声速传播模型,改进浅海区域海洋环境变化时声线的跟踪方法。本文提出了一种组合射线跟踪方法,该方法可以自适应地确定使用恒定声速射线跟踪方法还是等梯度射线跟踪方法。理论分析和仿真结果表明,与传统的声跟踪方法和恒定声速射线跟踪方法相比,该方法可以有效减小USBL中的斜距误差。所提出的声线校正算法解决了迭代次数与减少定位误差之间的矛盾,具有工程应用价值。

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