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Route optimization for offloading congested meter fixes

机译:路线优化以减轻拥堵的电表修复

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The Optimized Route Capability (ORC) concept proposed by the FAA facilitates traffic managers to identify and resolve arrival flight delays caused by bottlenecks formed at arrival meter fixes when there exists imbalance between arrival fixes and runways. ORC makes use of the prediction capability of existing automation tools, monitors the traffic delays based on these predictions, and searches the best reroutes upstream of the meter fixes based on the predictions and estimated arrival schedules when delays are over a predefined threshold. Initial implementation and evaluation of the ORC concept considered only reroutes available at the time arrival congestion was first predicted. This work extends previous work by introducing an additional dimension in reroute options such that ORC can find the best time to reroute and overcome the `first-come-first-reroute' phenomenon. To deal with the enlarged reroute solution space, a genetic algorithm was developed to solve this problem. Experiments were conducted using the same traffic scenario used in previous work, when an arrival rush was created for one of the four arrival meter fixes at George Bush Intercontinental Houston Airport. Results showed the new approach further improved delay savings. The suggested route changes from the new approach were on average 30 minutes later than those using other approaches, and fewer numbers of reroutes were required. Fewer numbers of reroutes reduce operational complexity and later reroutes help decision makers deal with uncertain situations.
机译:FAA提出的“优化航路能力”(ORC)概念可帮助交通管理人员识别和解决因到达仪表固定装置和跑道之间不平衡而造成的瓶颈所造成的到达航班延误。 ORC利用现有自动化工具的预测功能,基于这些预测来监控交通延误,并在延误超过预定义阈值时根据预测和估计的到达时间表,在电表修理上游搜索最佳路线。 ORC概念的最初实施和评估认为,仅在首次预测到达拥堵时才考虑重新路由。这项工作通过在重路由选项中引入一个额外的维度来扩展以前的工作,以便ORC可以找到重路由的最佳时间并克服“先来先重路由”现象。为了应对扩大的重路由解决方案空间,开发了一种遗传算法来解决此问题。实验是使用与以前工作相同的交通场景进行的,当时在休斯敦乔治布什洲际机场的四个到达仪表点之一创建了到达高峰。结果表明,新方法进一步改善了延迟节省。新方法建议的路线更改平均比使用其他方法的路线更改晚30分钟,并且所需的重新路线次数较少。更少的重新路由减少了操作的复杂性,后来的重新路由可以帮助决策者应对不确定的情况。

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