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OPTIMALLY AND EQUITABLY DISTRIBUTING DELAYS WITH THE AGGREGATE FLOW MODEL

机译:与聚合流模型的最佳和公平地分配延迟

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The aggregate flow model is used to determine how to distribute predeparture delays among air traffic control Centers and across time to optimally satisfy constraints on airspace capacity and departure rates. To do so, a quadratic cost on cumulative departure delays is introduced, resulting in an optimization problem that can be quickly solved using convex optimization tools. Simulations using the model demonstrate the behavior of the National Airspace System (NAS) when implementing optimal departure delays for a particular constraint scenario. These results show that capacity-constrained air traffic control Centers suffer the highest delays. Three approaches for increasing the equity of the distribution of delays across the NAS are investigated. The first involves setting an upper bound on the Gini coefficient, a quasi-convex measure of inequality. Another is to make delays in some Centers more costly than in others. The last approach is to put an upper bound on the delay per departure for each Center. Simulation results demonstrate that bounding delay per departure effectively reduces the delays for the constrained Center. Enforcing an upper bound on the Gini coefficient and increasing the weight on delays in some Centers may impose large delays on other Centers when reducing the delays in the constrained Center.
机译:该集合流模型来确定如何出国前延迟中的空中交通管制中心和跨时间分发到最佳满足空域容量和离开率的约束。要做到这一点,就累计离港延误的二次成本的引入,导致可以利用凸优化工具来快速解决的优化问题。实施特定约束的情况最佳离港延误时利用该模型仿真结果表明国家空域系统(NAS)的行为。这些结果表明,容量受限的空中交通管制中心遭受最高的延迟。三种方法增加延迟的分布的股权跨NAS进行了研究。第一种方法涉及设置的上部上的基尼系数,不平等的拟凸度量约束。另一种方法是使一些延误中心比其他更昂贵。最后一种方法是把一个上限每发车延迟每个中心。仿真结果表明,每次出发边界延迟有效地减少了限制中心的延迟。执行一个上限基尼系数以及在一些中心延迟增加重量减小的约束中心的延迟时可能对其他中心大的延迟。

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