Two-dimensional coordination of guidance and adaptive radiated waveform for interception and rendezvous problems

A. Balleri, A. Farina, A. Benavoli
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Abstract

We present an algorithm that allows an interceptor aircraft equipped with an airborne radar to meet another air target (the intercepted) by developing a guidance law and automatically adapting and optimising the transmitted waveform on a pulse to pulse basis. The algorithm uses a Kalman filter to predict the relative position and speed of the interceptor with respect to the target. The transmitted waveform is automatically selected based on its ambiguity function and accuracy properties along the approaching path. For each pulse, the interceptor predicts its position and velocity with respect to the target, takes a measurement of range and radial velocity and, with the Kalman filter, refines the relative range and range rate estimates. These are fed into a Linear Quadratic Gaussian (LQG) controller that ensures the interceptor reaches the target automatically and successfully with minimum error and with the minimum guidance energy consumption.
拦截与交会问题制导与自适应辐射波形的二维协调
我们提出了一种算法,该算法允许配备机载雷达的拦截飞机通过发展制导律并自动适应和优化脉冲到脉冲的传输波形来满足另一个空中目标(被拦截者)。该算法使用卡尔曼滤波来预测拦截器相对于目标的相对位置和速度。根据发射波形的模糊函数和接近路径的精度特性自动选择发射波形。对于每个脉冲,拦截器预测其相对于目标的位置和速度,测量距离和径向速度,并使用卡尔曼滤波器改进相对距离和距离速率估计。这些被送入线性二次高斯(LQG)控制器,确保拦截器以最小的误差和最小的制导能量消耗自动成功地到达目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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