Oh Raegeun, Song Taek Lyul, Choi Jee Woong
Department of Marine Science & Convergence Engineering, Hanyang University ERICA, Ansan 15588, Korea.
Department of Electronic Systems Engineering, Hanyang University ERICA, Ansan 15588, Korea.
Sensors (Basel). 2020 Feb 24;20(4):1234. doi: 10.3390/s20041234.
A target angular information in 3-dimensional space consists of an elevation angle and azimuth angle. Acoustic signals propagating along multiple paths in underwater environments usually have different elevation angles. Target motion analysis (TMA) uses the underwater acoustic signals received by a passive horizontal line array to track an underwater target. The target angle measured by the horizontal line array is, in fact, a conical angle that indicates the direction of the signal arriving at the line array sonar system. Accordingly, bottom bounce paths produce inaccurate target locations if they are interpreted as azimuth angles in the horizontal plane, as is commonly assumed in existing TMA technologies. Therefore, it is necessary to consider the effect of the conical angle on bearings-only TMA (BO-TMA). In this paper, a target conical angle causing angular ambiguity will be simulated using a ray tracing method in an underwater environment. A BO-TMA method using particle swarm optimization (PSO) is proposed for batch processing to solve the angular ambiguity problem.
三维空间中的目标角度信息由仰角和方位角组成。在水下环境中沿多条路径传播的声信号通常具有不同的仰角。目标运动分析(TMA)利用被动式水平线列阵接收的水声信号来跟踪水下目标。实际上,由水平线列阵测量的目标角度是一个圆锥角,它表示信号到达线列阵声纳系统的方向。因此,如果像现有TMA技术中通常假设的那样,将海底反射路径解释为水平面中的方位角,会产生不准确的目标位置。所以,有必要考虑圆锥角对纯方位目标运动分析(BO-TMA)的影响。本文将在水下环境中使用射线追踪方法模拟导致角度模糊的目标圆锥角。提出了一种使用粒子群优化(PSO)的BO-TMA方法进行批处理,以解决角度模糊问题。