首页> 外文会议>The 11th International Space Conference of Pacific-basin Societies(第11届环太平洋国际航天会议) >Study on Cislunar Low Energy Transfer Trajectory Design Based on Niche Simulated Annealing Genetic Algoritm
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Study on Cislunar Low Energy Transfer Trajectory Design Based on Niche Simulated Annealing Genetic Algoritm

机译:基于小生境模拟退火遗传算法的月面低能传递轨迹设计研究

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The Cislunar Low Energy Transfer Trajectory (CLETT) design using conversely integral method could be transformed into a multi-object optimization problem. Because the -sensitivity to the choice of initial parameters and multi hump characteristics of the optimization function, general direct optimal method is not available. The Genetic Simulated Annealing Algorithm (GSAA) is improved by performing selected annealing in every generation of evolution. After the Niche crowding strategy is conducted, a new Niche Simulated Annealing Genetic Algorithm (NSAGA) is proposed to solve the CLETT design problem. The simulation results show that, compared with the simple GA, NSAGA provides not only strongly global search capability, but also strongly local search capability. Meanwhile, NSAGA behaved very well when it is applied to search the Pareto solution set of the multi-objective optimization problem.
机译:利用逆积分法设计的Cislunar低能传递轨迹(CLETT)可以转化为多目标优化问题。由于对初始参数的选择和优化函数的多重峰特性具有敏感性,因此无法使用一般的直接最优方法。遗传模拟退火算法(GSAA)通过在每一代进化过程中执行选定的退火来进行改进。在进行了小生境拥挤策略后,提出了一种新的小生境模拟退火遗传算法(NSAGA)来解决CLETT设计问题。仿真结果表明,与简单遗传算法相比,NSAGA不仅具有强大的全局搜索能力,而且还具有强大的局部搜索能力。同时,NSAGA在搜索多目标优化问题的Pareto解集时表现良好。

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