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Entry trajectory optimization for hypersonic vehicle based on time-scales separation guidance with waterweeds algorithm

机译:基于水草算法的时标分离指导的高超音速飞行器进入轨迹优化

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This paper focuses on the hypersonic vehicle in consideration of oscillation and aerodynamic heating problems during reentry process, for trajectory optimization, penalty function method and ε level comparison are introduced for transforming the unconstrained waterweeds algorithm into constrained algorithm to solve multi-objective optimization problems, in which a novel and more precise criterion based on time-scales separation guidance for oscillation optimization is put forward indicating waterweeds algorithm to get a better optimal result. The algorithm transformed is successfully applied to trajectory design.
机译:本文在重新入门过程中考虑振荡和空气动力学发作问题,对轨迹优化,引入惩罚功能方法和ε等级比较来侧重于超声波,用于将无约束水疗算法转换为有限算法,以解决多目标优化问题其中基于时间尺度分离引导的新颖和更精确的标准进行了用于振荡优化的分离指导,指示水疗算法获得更好的最佳结果。变换的算法成功应用于轨迹设计。

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