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Near optimal re-entry guidance law using inverse problem approach

机译:逆问题法的近似最优再入制导律

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摘要

An explicit guidance law that maximizes terminal velocity is developed for a re-entry vehicle to a fixed target. Motion is constrained to an optimal, 3D Bezier curve. Acceleration commands are derived by solving an inverse problem related to Bezier parameters. An optimal Bezier curve is determined by solving a real-coded genetic algorithm. For online trajectory generation, optimal trajectory is approximated by fixing the second control point of the Bezier curve. The near optimal trajectory is compared with the genetic solution and with a form of proportional navigation. The near optimal terminal velocity solution compares very well with the genetic solution and is superior to the proportional navigation one. The approach robustness is examined by Monte Carlo simulation.
机译:针对重返载具到固定目标的显式制导律已得到发展。运动被限制为最佳的3D贝塞尔曲线。加速命令是通过解决与Bezier参数有关的反问题而得出的。通过求解实编码遗传算法来确定最佳贝塞尔曲线。对于在线轨迹生成,通过固定Bezier曲线的第二个控制点来估算最佳轨迹。将近乎最佳的轨迹与遗传解和比例导航进行比较。接近最优的终端速度解与遗传解有很好的比较,并且优于比例导航。通过蒙特卡洛模拟检查方法的鲁棒性。

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