研究目的
To improve the accuracy of slant distance in the USBL positioning system by introducing a combined ray tracing method that adaptively determines whether to use the constant sound speed ray tracing method or the equal gradient ray tracing method based on the gradient change in the sound speed profile.
研究成果
The combined ray tracing method effectively reduces the error of slant distance in USBL without increasing the amount of calculation iterations, demonstrating research significance and engineering application value. The method adaptively selects between constant sound speed ray tracing and equal gradient ray tracing based on the sound speed profile gradient, improving positioning accuracy in regions where the sound velocity changes significantly.
研究不足
The study focuses on the USBL positioning system in shallow sea areas and does not address the optimization of sound ray correction and continuous positioning between ultra-short baselines and moving sound sources. The operational time of the proposed method is very short, which may limit its application in scenarios requiring real-time processing of rapidly changing sound speed profiles.