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Trajectory optimization for terminal phase flight of hypersonic reentry vehicles with multi-constraints

机译:多约束高超声速再入飞行器末相飞行轨迹优化

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The trajectory optimization method for terminal phase flight of a hypersonic reentry vehicle is studied. In addition to the constraints on the final position coordinates, the final impact angle and velocity are specified, and the vehicle's attitude stabilization and the operational effectiveness when impacting are considered. The trajectory optimization problem is formulated as the multi-constraints optimal control problem. Via Radau pseudospectral method, it is converted into the nonlinear programming which is solved by SNOPT. Two different types of optimization missions are considered and simulation results verify the validity of the method. The optimal flight strategies are obtained and analyses of the difference of the results between different conditions are made. The research in this paper can also provide helpful references to mission planning and guidance for terminal phase flight of hypersonic reentry vehicles.
机译:研究了超音速再入飞行器末相飞行轨迹优化方法。除了对最终位置坐标的约束之外,还指定了最终的冲击角度和速度,并考虑了车辆的姿态稳定性和冲击时的操作效率。轨迹优化问题被表述为多约束最优控制问题。通过Radau伪谱方法,将其转换为非线性程序,由SNOPT求解。考虑了两种不同类型的优化任务,仿真结果验证了该方法的有效性。获得了最佳的飞行策略,并对不同条件下的结果差异进行了分析。本文的研究也可以为高超声速再入飞行器的末期飞行任务规划和制导提供有益的参考。

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