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Robust maneuvering envelope estimation based on reachability analysis in an optimal control formulation

机译:最优控制公式中基于可达性分析的鲁棒机动包络估计

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This paper discusses an algorithm for estimating the safe maneuvering envelope of damaged aircraft. The algorithm performs a robust reachability analysis through an optimal control formulation while making use of time scale separation and taking into account uncertainties in the aerodynamic derivatives. Starting with an optimal control formulation, the optimization problem can be rewritten as a Hamilton-Jacobi-Bellman equation. This equation can be solved by level set methods. This approach has been applied on an aircraft example involving structural airframe damage. Monte Carlo validation tests have confirmed that this approach is successful in estimating the safe maneuvering envelope for damaged aircraft.
机译:本文讨论了一种用于估计受损飞机的安全机动范围的算法。该算法通过最佳控制公式执行鲁棒的可达性分析,同时利用时间标度分隔并考虑了气动导数的不确定性。从最优控制公式开始,可以将优化问题重写为Hamilton-Jacobi-Bellman方程。该方程可以通过水平集方法求解。此方法已应用于涉及结构机身损坏的飞机实例。蒙特卡洛(Monte Carlo)验证测试已经确认,这种方法可以成功地估计受损飞机的安全操纵范围。

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