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Homotopy Route Generation Model for Robust Trajectory Planning

机译:适用于鲁棒轨迹规划的同型途径生成模型

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Although advance future avionics will enable full compliance with the given trajectory, there are many uncertainty sources that can deflect aircraft from their intended positions. In this article, we investigate potential of robust trajectory planning, considered as an additional demand management action, as a means to alleviate the en route congestion in airspace. Robust trajectory planning (RTP) involves generation of congestion-free trajectories with minimum operating cost taking into account uncertainty of trajectory prediction and unforeseen event. The model decision variables include ground delay, change of horizontal route, and vertical profile (flight level) to resolve congestion problem. The article introduces a novel approach for route generation (3D trajectory) based on homotopic feature of continuous functions. It is shown that this approach is capable of generating a large number of route shapes with a reasonable number of decision variables. RTP problem is modeled as a mixed-variable optimization problem, and it is solved using stochastic methods. The model is tested on a real-life example from the French airspace. The results indicate that, under certain conditions, at the expense of a small increase of total planned costs, it is possible to increase robustness of the proposed solution providing a good alternative to the solutions given by existing conflict-free trajectory planning models.
机译:虽然进入未来的航空电子将能够完全遵守给定的轨迹,但是有许多不确定性来源可以从其预期的位置偏转飞机。在本文中,我们调查了稳健轨迹规划的潜力,被视为额外的需求管理行动,作为缓解空域中的通路拥堵的手段。强大的轨迹规划(RTP)涉及在轨迹预测和不可预见的事件的不确定性考虑到最低运营成本的拥堵轨迹。模型决策变量包括地延迟,水平路径的变化和垂直轮廓(飞行级别)来解决拥塞问题。本文介绍了一种基于连续功能的同型特征的路线发电(3D轨迹)的新方法。结果表明,该方法能够产生具有合理数量的判定变量的大量路由形状。 RTP问题被建模为混合变量优化问题,并使用随机方法进行解决。该模型在法国空域的真实例子上进行了测试。结果表明,在某些条件下,根据总规划成本的小额增加,可以增加所提出的解决方案的稳健性,为现有的无冲突轨迹规划模型提供了良好的替代方案。

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