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Experimental approach to NextGen benefits estimation: A case of single-airline Aircraft Arrival Management System

机译:NextGen收益估算的实验方法:以单飞机飞机抵达管理系统为例

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摘要

The Next Generation Air Transportation System (NextGen) embraces multiple operational and technological improvements that enable efficiencies for users and service providers. In managing the development of NextGen, the Federal Aviation Administration (FAA) is assessing initiatives and potential components of the future system. One component is software that jointly optimizes the timing of arriving traffic to streamline flight arrivals at congested airports (Aircraft Arrival Management Systems or AAMS). Since most of the proposed NextGen improvements are not yet implemented, their evaluations typically are conducted through modeling, simulation, and/or subject matter expert surveys. In contrast, this study utilizes experimental settings in a real-time operating environment to examine potential benefits of the AAMS. During the experiment, a number of system performance variables were recorded in two data collection periods: a passive period, when the system was operating without the AAMS, and an active period, when the AAMS optimized arriving traffic of a dominant airline. Due to confounding data issues, the results indicate that with only 6.5 percent of arriving traffic optimized, there are no observable improvements in the overall system performance. However, the study documents tangible benefits for optimized flights and a positive interaction effect between the FAA's Traffic Management Advisor and the AAMS.
机译:下一代航空运输系统(NextGen)进行了多项运营和技术改进,可提高用户和服务提供商的效率。在管理NextGen的开发过程中,联邦航空管理局(FAA)正在评估未来系统的计划和潜在组成部分。一个组件是软件,该软件可以共同优化到达交通的时间安排,以简化在拥挤的机场的航班到达(飞机到达管理系统或AAMS)。由于大多数提议的NextGen改进措施尚未实施,因此通常通过建模,仿真和/或主题专家调查进行评估。相比之下,本研究利用实时操作环境中的实验设置来检查AAMS的潜在优势。在实验期间,在两个数据收集时段中记录了许多系统性能变量:一个被动时段(当系统在没有AAMS的情况下运行)和一个主动时段(当AAMS优化主要航空公司的到达航班时)。由于令人困惑的数据问题,结果表明,只有6.5%的到达流量得到了优化,整体系统性能没有明显改善。但是,该研究记录了优化航班的实实在在的好处以及FAA的交通管理顾问与AAMS之间的积极互动效果。

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