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A mixed 0-1 nonlinear optimization model and algorithmic approach for the collision avoidance in ATM: Velocity changes through a time horizon

机译:避免ATM中碰撞的混合0-1非线性优化模型和算法方法:速度在时间范围内变化

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摘要

In this paper a mixed 0-1 nonlinear model for the Collision Avoidance problem in Air Traffic Management is presented. The aim of the problem consists of deciding the best strategy for an arbitrary aircraft configuration such that all conflicts in the airspace are avoided where a conflict is the loss of the minimum safety distance that two aircraft have to keep in their flight plans. The optimization model is based on geometric constructions. It requires knowing the initial flight plan (coordinates, angles and velocities in each period). The objective is the minimization of the acceleration variations when the aircraft are forced to return to the original flight plan once there is no aircraft in conflict. A linear approximation by using iteratively Taylor polynomials is presented to solve the problem in mixed 0-1 linear terms. An extensive computational experience for a testbed of large-scale instances is reported.
机译:针对空中交通管理中的避碰问题,本文提出了一种混合0-1非线性模型。该问题的目的在于确定用于任意飞机配置的最佳策略,从而避免在空域中发生所有冲突的情况,其中冲突是两架飞机在其飞行计划中必须保持的最小安全距离的损失。优化模型基于几何构造。它需要知道初始飞行计划(每个周期的坐标,角度和速度)。目的是当没有飞机发生冲突时,当飞机被迫返回原始飞行计划时将加速度变化降到最小。提出了使用迭代泰勒多项式进行线性逼近的方法,以解决0-1混合线性项的问题。报告了大型实例测试平台的广泛计算经验。

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