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Solving air traffic conflict problems via local continuous optimization

机译:通过局部连续优化解决空中交通冲突问题

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摘要

This paper first introduces an original trajectory model using B-splines and a new semi-infinite programming formulation of the separation constraint involved in air traffic conflict problems. A new continuous optimization formulation of the tactical conflict-resolution problem is then proposed. It involves very few optimization variables in that one needs only one optimization variable to determine each aircraft trajectory. Encouraging numerical experiments show that this approach is viable on realistic test problems. Not only does one not need to rely on the traditional, discretized, combinatorial optimization approaches to this problem, but, moreover, local continuous optimization methods, which require relatively fewer iterations and thereby fewer costly function evaluations, are shown to improve the performance of the overall global optimization of this non-convex problem. (C) 2014 Elsevier B.V. All rights reserved.
机译:本文首先介绍了使用B样条的原始轨迹模型以及涉及空中交通冲突问题的分离约束的新的半无限编程公式。然后提出了解决战术冲突的新的连续优化公式。它涉及的优化变量很少,因为只需一个优化变量即可确定每架飞机的轨迹。令人鼓舞的数值实验表明,这种方法对于实际的测试问题是可行的。不仅不需要依靠传统的,离散的组合优化方法来解决此问题,而且,还显示了局部连续优化方法,该方法需要相对较少的迭代并因此减少了昂贵的函数评估,从而提高了算法的性能。此非凸问题的整体全局优化。 (C)2014 Elsevier B.V.保留所有权利。

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