Direct-Indirect Hybrid Strategy for Optimal Powered Descent and Landing

Fabio Spada, Marco Sagliano, F. Topputo
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Abstract

A hybrid algorithm to solve optimal control problems is discussed in the present paper and applied to the powered descent guidance (PDG) problem. A reference solution is first obtained via a convex direct solver and is then used as guess for the primal–dual boundary-value problem associated with the initial problem. In this context, a covector mapping theorem is used to map the multipliers of the direct solution to the corresponding discrete costates of the indirect method. Collocation based on hp pseudospectral scheme is employed for the convex direct step, while single shooting is used for the indirect step. A switching-detection technique further equips the shooting. As opposed to the hybrid convex-indirect algorithm, a state-of-the-art purely indirect algorithm is outlined; such approach merges the same single shooting approach with a homotopic continuation. The proposed methods are applied to the pinpoint landing formulation of the PDG, framed in a three-dimensional environment. The results are finally outlined, comparing the proposed hybrid strategy to the purely indirect approach. The outcome highlights the gain in computational times for the hybrid optimization technique over the fully homotopic scheme, demonstrating the validity of the former for landing trajectory optimization purposes.
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最优动力下降与着陆的直接-间接混合策略
本文讨论了一种求解最优控制问题的混合算法,并将其应用于动力下降制导问题。首先通过凸直接求解得到参考解,然后将其用作与初始问题相关的原始-对偶边值问题的猜测。在这种情况下,使用协向量映射定理将直接解的乘子映射到间接方法的相应离散余态。凸直接步骤采用基于hp伪谱格式的配置,间接步骤采用单次射击。切换检测技术进一步装备了射击。与混合凸-间接算法相反,本文概述了一种最先进的纯间接算法;该方法将相同的单次射击方法与同伦延拓方法相结合。提出的方法应用于PDG的精确着陆公式,框架在三维环境中。最后概述了结果,并将所提出的混合策略与纯间接方法进行了比较。结果表明,混合优化技术比完全同伦方案在计算时间上有所提高,证明了前者在着陆轨迹优化方面的有效性。
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