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Modeling and simulation of torpedo acoustic homing trajectory with multiple targets

机译:鱼雷多目标声自导轨迹建模与仿真。

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摘要

The characteristics of a torpedo's acoustic homing trajectory with multiple targets were studied. The differential equations of torpedo motion were presented based on hydrodynamics. The Fourth order Runge-Kutta method was used to solve these equations. Derived from sonar equations and Snell's law, a simple virtual underwater acoustic environment was established for simulating the torpedo homing process. The Newton iteration method was used to calculate homing range and ray tracing was approximated by piecewise line, which takes into consideration distortions cause by temperature, pressure, and salinity in a given sea area. The influence of some acoustic warfare equipment disturb the torpedo homing process in certain circumstances, including decoys and jammers, was alsotaken into account in simulations. Relative target identification logic and homing control laws were presented. Equal consideration during research was given to the requirements of real-timeactivity as well as accuracy. Finally , a practical torpedo homing trajectory simulation program was developed and applied to certain projects.
机译:研究了具有多个目标的鱼雷声自导轨迹的特性。基于流体力学,提出了鱼雷运动的微分方程。使用四阶Runge-Kutta方法求解这些方程。从声纳方程和斯涅尔定律推导,建立了一个简单的虚拟水下声环境,用于模拟鱼雷自导过程。使用牛顿迭代法计算归巢范围,并通过分段线近似光线追踪,其中考虑了给定海域中温度,压力和盐度引起的畸变。模拟中还考虑了某些声学战设备的影响,在某些情况下会干扰鱼雷的制导过程,包括诱饵和干扰器。提出了相对目标识别逻辑和寻的控制律。在研究过程中,对实时性和准确性的要求也给予了同等的考虑。最后,开发了实用的鱼雷自导轨迹仿真程序,并应用于某些项目。

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