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Multi-objective optimization of reentry trajectory planning for hypersonic aircraft based on ant colony algorithm

机译:基于蚁群算法的高超音速飞机再入弹道规划多目标优化

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The novel method of multi-objective optimization of reentry trajectory planning for hypersonic aircraft based on ant colony algorithm is proposed in this paper. Firstly, the reentry corridor is determined in terms of different constraint conditions during reentry process. In the reentry corridor, different optimal reentry trajectories are decided by objectives. To solve the multi-objective optimization of reentry trajectory planning, ant colony algorithm is utilized which would plan an optimal trajectory satisfying a certain demand according to different weight allocation among multi-objective. Simulation results of three cases with different weight allocation between two objectives indicate that this algorithm can plan different optimal trajectories according to weight allocation between two objectives in order to satisfy diverse mission requirement.
机译:提出了一种基于蚁群算法的高超音速飞机再入轨计划多目标优化的新方法。首先,在折返过程中,根据不同的约束条件确定折返通道。在折返通道中,不同的最佳折返轨迹由目标决定。为了解决再入轨迹规划的多目标优化问题,采用了蚁群算法,根据多目标之间的权重分配,可以规划出满足一定需求的最优轨迹。在两个目标之间权重分配不同的三种情况下的仿真结果表明,该算法可以根据两个目标之间的权重分配来规划不同的最优轨迹,以满足不同的任务需求。

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