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Steady glide reentry trajectory optimization with waypoint and no-fly zone constraints

机译:稳态滑动再入轨迹优化与航点和无飞区域约束

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This paper studies the hypersonic reentry trajectory optimization problem considering waypoints and no-fly zones constraints. This problem is difficult to solve because of (1) the poor damping phugoid oscillations, (2) the constraints on waypoints and no-fly zones, and (3) the rapid changes in part of the trajectory. To suppress the oscillations, we establish a novel reentry dynamic model by embedding the trajectory damping control technique (TDCT) in it, and thus successfully enhance the damping of the trajectory. To improve the accuracy of the model, we establish an exact mathematical model for the no-fly zone constraint over the spherical Earth. Considering the rapid changes in part of the trajectory and some strict constraints, we divide the whole trajectory into phases and adopt the multi-phase Radau pseudospectral method (MRPM) to solve the optimal control problem. Moreover, an adaptive mesh refinement strategy is applied to guarantee the solution precision by infilling grid or adjusting the interpolation polynomial order. The proposed method requires a light computational load to obtain the optimal trajectory satisfying the waypoints, no-fly zones and other constraints. Compared with the Gauss pseudospectral method (GPM), the trajectory planned by the proposed method is accurate, smooth, and easy to track.
机译:本文研究了考虑航点和无飞区域约束的超声回流轨迹优化问题。由于(1)较差的垂度振荡,(2)在航点和无飞区域的限制,(3)轨迹的快速变化,难以解决这个问题为了抑制振荡,我们通过在其中嵌入轨迹阻尼控制技术(TDCT)来建立新的再入性动态模型,从而成功增强轨迹的阻尼。为了提高模型的准确性,我们为球形地球的无飞区域约束建立了一个确切的数学模型。考虑到部分轨迹的快速变化和一些严格的限制,我们将整个轨迹划分为阶段,采用多相散开伪谱法(MRPM)来解决最佳控制问题。此外,应用自适应网格细化策略来通过卸入网格或调整插值多项式顺序来保证溶液精度。所提出的方法需要光计算负载来获得满足航点,无飞区域和其他约束的最佳轨迹。与Gauss伪谱法(GPM)相比,所提出的方法计划的轨迹是准确的,光滑的,易于追踪。

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