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Multi-constrained predictor-corrector reentry guidance for hypersonic vehicles

机译:高超声速飞行器的多约束预测器-校正器折返指导

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摘要

A numerical multi-constrained predictor-corrector guidance algorithm is proposed in this study, focusing on real-time longitudinal trajectory generation, constraint management, and lateral guidance improvement. First, a new compound bank corridor is designed to help convert the complicated trajectory planning problem into a root-finding problem, which is identified by a recursive least squares estimation algorithm and solved by a newly proposed period-crossing steepest descent method within a fraction of a second in Matlab. Second, three constraint enforcement operators are designed based on state prediction and feedback theory, and the long-standing constraint violation problem of predictor-corrector algorithms is addressed by on-board bank angle compensation. Additionally, a new predictive lateral guidance algorithm is proposed based on a cross-range proportional decrement strategy, and the resulting new bank reversal logic with only one user-defined parameter has better performance on reversal controllability and guidance robustness than the traditional algorithms. Finally, extensive numerical simulations are carried out for different mission scenarios with significant dispersions, and the new methodology is proved to be capable of autonomous and robust guidance flight for reentry vehicles.
机译:本研究提出了一种数值多约束预测器-校正器制导算法,重点是实时纵向轨迹生成,约束管理和横向制导改进。首先,设计了一个新的复合岸廊,以帮助将复杂的轨迹规划问题转换成寻根问题,该问题由递归最小二乘估计算法确定,并由新提出的周期交叉最速下降法解决。在Matlab中一秒钟。其次,基于状态预测和反馈理论设计了三个约束执行算子,并通过机载倾斜角补偿解决了预测校正算法长期存在的约束违规问题。此外,提出了一种基于跨范围比例递减策略的新型预测侧向制导算法,与传统算法相比,新的仅具有一个用户定义参数的库反转逻辑在反转可控性和制导鲁棒性方面具有更好的性能。最后,针对具有明显分散性的不同任务场景进行了广泛的数值模拟,并且新方法被证明能够对再入飞行器进行自主和鲁棒的引导飞行。

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