中国空间科学技术 ›› 2023, Vol. 43 ›› Issue (3): 43-54.doi: 10.16708/j.cnki.1000-758X.2023.0037

• 论文 • 上一篇    下一篇

等再入航程返回轨道模糊混合优化设计

陈伟跃,王国军,王阳,陈蒙,张治国   

  1. 中国空间技术研究院,北京100094
  • 出版日期:2023-06-25 发布日期:2023-05-23

Fuzzy hybrid optimization for equal reentry range return trajectory

CHEN Weiyue,WANG Guojun,WANG Yang,CHEN Meng,ZHANG Zhiguo   

  1. China Academy of Space Technology,Beijing 100094,China
  • Published:2023-06-25 Online:2023-05-23

摘要: 为了消除采用梯度迭代求解算法求解再入弹道优化问题时对初始值的依赖,减小遗传算法对种群数量和迭代次数的需求,采用模糊思想设计了改进的稳态遗传序列二次规划(GA-SQP)混合求解算法。针对等再入航程返回轨道设计问题,提出了初始种群的基因检测方法、基于模糊隶属度的评分函数建立方法和搜索过程中劣质基因的评分方法,考虑了过载超限时间约束、倾侧角翻转最大角速度限制等实际约束,给出了序列二次规划求解过程中再入点在瞄准点之后和制动时长过短的特殊情况下约束的处理方法。采用改进的稳态GA-SQP混合求解算法,可以实现近地轨道变高度返回的情况下等再入航程返回轨道设计。改进的稳态GA-SQP混合求解算法不依赖于初始值,种群数量较小,与未改进的遗传序列二次规划算法相比迭代次数减少34.7%,计算速度和计算精度均达到工程适用程度。

关键词: 遗传序列二次规划(GA-SQP), 模糊评分, 基因检测, 等再入航程, 返回轨道, 轨迹优化

Abstract: Gradient kind methods depend on initial values for reentry trajectory optimization problem.Genetic algorithm requires large population and many iterations for reentry trajectory optimization.In order to avoid the disadvantages mentioned,an improved steady state genetic algorithm combined with successive quadratic programming(GA-SQP)algorithm was proposed.For equal reentry range trajectory design problem,an initial population genic check method was designed.Also a fuzzy fitness function and an inferior gene score method were provided.The reentry overload duration limitation and bank angular velocity limitation were included.In the singularity situations of reentry point behind target point and short brake duration,constraints evaluation method was also provided for successive quadratic programming process.The improved steady state GA-SQP method proposed can be applied to equal reentry range trajectory design in variable orbit altitude situations.The improved steady state  GA-SQP method proposed is independent of initial values.Comparative simulations show that the population and iterations of improved steady state GA-SQP method are decreased.The improved steady-state GA-SQP algorithm needs 34.7% fewer iterations,and its computation speed and result precision are suitable for engineering applications.

Key words: genetic algorithm combined with successive quadratic programming algorithm(GA-SQP), fuzzy fitness, genic check method, equal reentry range trajectory, reentry orbit, trajectory optimization