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Probabilistic Aircraft Midair Conflict Resolution Using Stochastic Optimal Control

机译:基于随机最优控制的概率飞机半空中冲突解决

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This paper studies the problem of aircraft midair conflict resolution, which is a key technology to enable the coordinated and decentralized air traffic control envisioned in the Next Generation Air Transportation System (NextGen). The method proposed in this paper is based on stochastic optimal control, which is able to incorporate uncertainties in both aircraft and wind dynamics. The proposed numerical algorithm uses a Markov chain (MC) to approximate the continuous-time aircraft and wind dynamics, then the optimal control law is derived based on the MC. The proposed algorithm is able to resolve the conflicts between aircraft and moving convective weather regions. For conflict resolution between pairs of aircraft, a decomposition technique is proposed to reduce the computational complexity of the numerical algorithm. Simulations show that the proposed algorithm provides robustness against uncertainties in the system and is suitable for real applications.
机译:本文研究解决飞机空中冲突的问题,这是实现下一代航空运输系统(NextGen)中设想的协调和分散的空中交通管制的一项关键技术。本文提出的方法基于随机最优控制,能够将飞机和风动力学的不确定性纳入考虑范围。所提出的数值算法使用马尔可夫链(MC)来近似连续时间的飞机和风动力学,然后基于MC推导最优控制律。所提出的算法能够解决飞机与移动对流天气区域之间的冲突。为了解决飞机对之间的冲突,提出了一种分解技术来降低数值算法的计算复杂度。仿真结果表明,所提出的算法具有较强的鲁棒性,可以抵抗系统中的不确定性,适合实际应用。

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