低推力弹道优化分布算法的自适应估计

IF 1.3 4区 工程技术 Q2 ENGINEERING, AEROSPACE Journal of Spacecraft and Rockets Pub Date : 2023-08-02 DOI:10.2514/1.a35570
A. Shirazi
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引用次数: 1

摘要

提出了一种直接自适应方案,作为使用适应度景观分析(FLA)进行非共面轨道转移中最小燃料小推力轨道设计的替代方法。航天器动力学是通过考虑[公式:见正文]轨道扰动,根据修改的平分点元素建模的。考虑推力圆弧的时间、推力剖面的离散化节点以及多脉冲轨道转移的求解,形成了低推力轨道机动的约束连续优化问题。提出了一种在分布估计算法(EDA)框架内的自适应方法,旨在保持搜索过程中解的可行性。介绍了几种用于低推力弹道优化的问题识别器,并通过FLA评估搜索空间的景观特征来分析求解域的复杂性。提出了两种自适应算子,根据搜索域的探索和开发需求来控制搜索过程,以实现最优转移。在所提出的EDA中实现了自适应算子,并解决了几个扰动和非扰动轨道转移问题。结果证实了所提出的方法在寻找最佳低推力转移轨迹方面的有效性和可靠性。
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Adaptive Estimation of Distribution Algorithms for Low-Thrust Trajectory Optimization
A direct adaptive scheme is presented as an alternative approach for minimum-fuel low-thrust trajectory design in non-coplanar orbit transfers using fitness landscape analysis (FLA). The spacecraft dynamics is modeled with respect to modified equinoctial elements by considering [Formula: see text] orbital perturbations. Taking into account the timings of thrust arcs, the discretization nodes for thrust profile, and the solution of multi-impulse orbit transfer, a constrained continuous optimization problem is formed for low-thrust orbital maneuvers. An adaptive method within the framework of the estimation of distribution algorithms (EDA) is proposed, which aims at conserving the feasibility of the solutions within the search process. Several problem identifiers for low-thrust trajectory optimization are introduced, and the complexity of the solution domain is analyzed by evaluating the landscape feature of the search space via FLA. Two adaptive operators are proposed, which control the search process based on the need for exploration and exploitation of the search domain to achieve optimal transfers. The adaptive operators are implemented in the presented EDA and several perturbed and nonperturbed orbit transfer problems are solved. The results confirm the effectiveness and reliability of the proposed approach in finding optimal low-thrust transfer trajectories.
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来源期刊
Journal of Spacecraft and Rockets
Journal of Spacecraft and Rockets 工程技术-工程:宇航
CiteScore
3.60
自引率
18.80%
发文量
185
审稿时长
4.5 months
期刊介绍: This Journal, that started it all back in 1963, is devoted to the advancement of the science and technology of astronautics and aeronautics through the dissemination of original archival research papers disclosing new theoretical developments and/or experimental result. The topics include aeroacoustics, aerodynamics, combustion, fundamentals of propulsion, fluid mechanics and reacting flows, fundamental aspects of the aerospace environment, hydrodynamics, lasers and associated phenomena, plasmas, research instrumentation and facilities, structural mechanics and materials, optimization, and thermomechanics and thermochemistry. Papers also are sought which review in an intensive manner the results of recent research developments on any of the topics listed above.
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