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Numerical Investigation of Aircraft High-speed Runway Exit Using Generalized Optimal Control

机译:飞机高速跑道出口的广义最优控制数值研究。

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To aim at reducing aircraft turnaround time and improving airport operation efficiency, this paper considers the optimization of aircraft ground manoeuvres such as a high-speed runway exit. The aircraft on the ground is a highly nonlinear dynamical system described by a fully parameterized mathematical model. The full aircraft model used in this paper has been further developed to include combined slip tire model. An iterative simulation-based optimization algorithm known as Generalized Optimal Control is employed to investigate the optimal solution for the control input such as nose-gear steering, main-gear brakes and engine thrust. To achieve different control objectives, the cost function is defined accordingly and then minimized by GOC. The optimization results of GOC will help to explore the safety boundary of ground handling and guide the design of a real-time controller.
机译:为了减少飞机周转时间并提高机场运营效率,本文考虑了对飞机地面操作(例如高速跑道出口)的优化。地面上的飞机是高度非线性的动力系统,由完全参数化的数学模型描述。本文中使用的完整飞机模型已得到进一步发展,以包括组合式滑模模型。基于迭代仿真的优化算法称为通用最优控制,用于研究控制输入(如前齿轮转向,主齿轮制动器和发动机推力)的最佳解决方案。为了实现不同的控制目标,需要相应地定义成本函数,然后由GOC将该成本函数最小化。 GOC的优化结果将有助于探索地面处理的安全边界,并指导实时控制器的设计。

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