深海影区水平阵有源声呐目标方位距离估计
Direction-of-arrival and range estimation using active sonar with horizontal array in sound shadow zone of deep water
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摘要: 采用海底反射模式探测深海影区目标时, 由于声线随声速剖面变化发生弯曲, 常规水平阵目标方位及距离估计误差较大; 利用声线多途时延和俯仰角的定位方法可有效减小误差, 但水平阵无法直接获取声线的俯仰角。为此, 基于深海影区的射线声学模型, 利用移动水平阵不同观测点的声线多途时延与测量方位, 对声线俯仰角与目标真实方位进行解耦, 进而提出了一种利用声线多途时延与俯仰角估计目标距离和方位的方法, 提高了距离–方位的估计精度。仿真实验与影响因素分析验证了该方法的正确性。海试实验结果表明, 距离和方位估计结果与实际目标距离和方位吻合度较高, 验证了该算法的有效性。Abstract: When detecting targets in sound shadow zones of deep water using bottom bounce mode, the bending of sound rays due to changes in the sound speed profile often leads to significant errors in estimating the azimuth, depth, and distance of targets using conventional horizontal arrays. The positioning technique utilizing multipath time delays and elevation angles of sound rays is an effective method to reduce errors, but horizontal arrays are unable to directly measure the elevation angles of sound rays. To address this issue, this paper proposed a method based on the ray acoustics model in deep-sea shadow zones. By utilizing the multipath time delays and measured azimuths of sound rays from different observation points of a moving horizontal array, the decoupling of sound ray elevation angles and the true azimuth of the target is achieved. A method is then presented for estimating the distance and azimuth of the target using the multipath time delays and elevation angles of sound rays, which improves positioning accuracy. Simulation experiments and analysis of influencing factors verify the correctness of this method. The results of sea trials indicate that the estimated distance and azimuth values are highly consistent with the actual distance and azimuth of the target, thus validating the effectiveness of the proposed algorithm.