Branch-and-Bound Global-Search Algorithm for Aircraft Ground Movement Optimization

Pushkar J. Godbole, A. Ranade, R. Pant
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引用次数: 6

Abstract

Optimal aircraft ground scheduling is a well-known nondeterministic polynomial-time-hard problem; hence, many heuristics are used to generate schedules within realistic runtimes. These heuristics are designed to run fast, but they often do not promise any guarantee about the solution quality. Inspired by two existing algorithms for scheduling of railway operations, this paper introduces a branch-and-bound-based aircraft routing and scheduling approach with guaranteed global optimality as a real-time decision support tool for air traffic controllers. The performance of the algorithm is benchmarked against two previous approaches: a combinatorial approach using mixed-integer linear programming, and a heuristic approach based on bacterial foraging. The configuration agnostic design of the algorithm makes it suitable for applications: even to unconventional airport layouts. The globally optimal nature of the current solution exhibits a distinct improvement over the respective solutions while maintaining minim...
飞机地面运动优化的分支定界全局搜索算法
飞机地面最优调度是一个众所周知的不确定性多项式时间难题;因此,许多启发式方法用于在实际运行时内生成调度。这些启发式方法旨在快速运行,但它们通常不能保证解决方案的质量。在现有两种铁路调度算法的启发下,提出了一种保证全局最优的基于分支绑定的飞机路由调度方法,作为空中交通管制员的实时决策支持工具。该算法的性能与之前的两种方法进行了基准测试:使用混合整数线性规划的组合方法和基于细菌觅食的启发式方法。该算法的组态不可知设计使其适用于应用:甚至是非常规的机场布局。当前解决方案的全局最优性质比各自的解决方案有明显的改进,同时保持最小…
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