复杂约束和摄动条件下的多脉冲交会轨迹优化

Trajectory Optimization of Multi-Impulse Rendezvous Under Complex Constraints and Perturbation Conditions

  • 摘要: 针对复杂约束和摄动条件下航天器的多脉冲远程交会轨迹优化问题,本文提出理想二体模型下全局优化和摄动模型下局部修正相结合的逐步递进优化求解策略. 考虑交会过程中的太阳光照、测控弧段等约束,采用综合粒子群算法在理想二体模型下进行全局优化,将全局优化结果作为初始猜测,通过序列二次规划在J2模型和高精度模型中对交会问题依次进行局部优化修正,最终求解得到在高精度轨道模型中满足约束的交会脉冲. 仿真结果表明,本文提出的优化求解策略能够生成贴合实际轨道环境、满足不同场景需求和约束的远程交会控制脉冲.

     

    Abstract: For the problem of multi-impulse long-range rendezvous trajectory optimization of spacecraft under complex constraints and perturbation conditions, this paper proposes a step-by-step optimization solution strategy that combines global optimization under the ideal two-body model and local correction under the perturbation model. Considering constraints such as sunlight exposure and tracking and control arcs during the rendezvous process, the comprehensive particle swarm algorithm is first used for global optimization under the ideal two-body model, and then the global optimization result is taken as the initial guess. The rendezvous problem is successively subjected to local optimization and correction in the J2 model and high-precision model through sequential quadratic programming, and finally the rendezvous impulses that satisfy the constraints in the high-precision orbital model are obtained through solution. The simulation results show that the optimization solution strategy proposed in this paper can generate long-range rendezvous control impulses that conform to the actual orbital environment and meet the requirements and constraints of different scenarios.

     

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