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首页> 外文期刊>Journal of guidance, control, and dynamics >Robust Reentry Guidance of a Reusable Launch Vehicle Using Model Predictive Static Programming
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Robust Reentry Guidance of a Reusable Launch Vehicle Using Model Predictive Static Programming

机译:基于模型预测静态规划的可重复使用运载火箭的稳健再入导

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摘要

A robust suboptimal reentry guidance scheme is presented for a reusable launch vehicle using the recently developed, computationally efficient model predictive static programming. The formulation uses the nonlinear vehicle dynamics with a spherical and rotating Earth, hard constraints for desired terminal conditions, and an innovative cost function having several components with associated weighting factors that can account for path and control constraints in a soft constraint manner, thereby leading to smooth solutions of the guidance parameters. The proposed guidance essentially shapes the trajectory of the vehicle by computing the necessary angle of attack and bank angle that the vehicle should execute. The path constraints are the structural load constraint, thermal load constraint, bounds on the angle of attack, and bounds on the bank angle. In addition, the terminal constraints include the three-dimensional position and velocity vector components at the end of the reentry. Whereas the angle-of-attack command is generated directly, the bank angle command is generated by first generating the required heading angle history and then using it in a dynamic inversion loop considering the heading angle dynamics. Such a two-loop synthesis of bank angle leads to better management of the vehicle trajectory and avoids mathematical complexity as well. Moreover, all bank angle maneuvers have been confined to the middle of the trajectory and the vehicle ends the reentry segment with near-zero bank angle, which is quite desirable. It has also been demonstrated that the proposed guidance has sufficient robustness for state perturbations as well as parametric uncertainties in the model.
机译:使用最近开发的,计算效率高的模型预测静态编程,为可重复使用的运载火箭提出了鲁棒的次优再入制导方案。该公式使用具有球形和旋转地球的非线性车辆动力学,对所需终端条件的硬约束以及具有多个具有相关加权因子的组件的创新成本函数,这些加权因子可以以软约束方式解决路径和控制约束,从而导致指导参数的平滑解决方案。所提出的指导通过计算车辆应执行的必要迎角和倾斜角,从根本上塑造了车辆的轨迹。路径约束是结构载荷约束,热载荷约束,迎角的边界和堤岸角的边界。另外,终端约束包括折返结束时的三维位置和速度矢量分量。攻击角命令是直接生成的,而倾斜角命令是通过首先生成所需的航向角历史记录,然后在考虑到航向角动力学的动态反演循环中使用它来生成的。倾斜角的这种两环合成导致对车辆轨迹的更好管理,并且还避免了数学上的复杂性。此外,所有倾斜角操纵都被限制在轨迹的中间,并且车辆以接近零的倾斜角结束折返段,这是非常理想的。还已经证明,所提出的指导对于模型中的状态扰动以及参数不确定性具有足够的鲁棒性。

著录项

  • 来源
    《Journal of guidance, control, and dynamics》 |2014年第1期|134-148|共15页
  • 作者单位

    Indian Institute of Science, Bangalore 560 012, India,Department of Aerospace Engineering;

    Indian Institute of Science, Bangalore 560 012, India,Department of Aerospace Engineering;

    Indian Institute of Science, Bangalore 560 012, India,Department of Aerospace Engineering;

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  • 正文语种 eng
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