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Precision Munition Guidance and Moving-Target Estimation

机译:精确弹药制导和移动目标估计

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摘要

The efficacy of a munition depends on target detection, estimation of its motion, guidance, tracking and control; in fact even more so if the target is moving. This paper is concerned with flight dynamics of a munition in atmosphere under four different guidance schemes to intercept an evasive ground target The miss distances and commanded acceleration required by these guidance laws are compared. Two-dimensional planar flight of the munition and its pitch motion model is developed and simulated. The forward and/or backward motion of a target tank on the ground is modeled as a second-order Gauss-Markov process. To estimate the target location on the ground and the line-of-sight rate to intercept it, an Extended Kalman filter is composed whose state vector consists of cascaded state vectors of missile dynamics and target dynamics. The line-of-sight angle measurement from the infrared seeker and range measurement from the millimeter wave radar are used in the Kalman Filter for relative navigation of the munition. With navigation errors amidst sensor measurement noise, the miss distance of the munition is 1.03 m. It is capable of hitting the target with high accuracy as well as minimizing the lateral acceleration demand.
机译:弹药的效力取决于目标的探测,其运动的估计,制导,跟踪和控制;实际上,如果目标在移动,则更是如此。本文涉及一种在四种不同制导方案下拦截大气逃逸地面目标的弹药在大气中的飞行动力学。比较了这些制导律要求的未命中距离和指令加速度。研制并仿真了弹药的二维平面飞行及其俯仰运动模型。目标坦克在地面上的向前和/或向后运动被建模为二阶高斯-马尔可夫过程。为了估计地面上的目标位置以及拦截目标的视线速率,组成了扩展卡尔曼滤波器,其状态向量由导弹动力学和目标动力学的级联状态向量组成。卡尔曼滤波器使用红外导引器的视线角测量和毫米波雷达的测距器进行弹药的相对导航。在传感器测量噪声中存在导航错误的情况下,弹药的失误距离为1.03 m。它能够高精度地击中目标,并最大程度地减少横向加速度需求。

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  • 来源
    《Journal of guidance, control, and dynamics》 |2016年第9期|2100-2111|共12页
  • 作者

    S. Sreeja; H. B. Hablani;

  • 作者单位

    Indian Institute of Technology-Bombay, Mumbai, Maharashtra 400 076, India;

    Indian Institute of Technology-Bombay, Mumbai, Maharashtra 400 076, India;

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  • 正文语种 eng
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