约束空域的识别和可视化

S. Wenchel, G. Coville
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引用次数: 0

摘要

卫星机场与主要机场的接近增加了空域的复杂性,导致所有飞机都必须争夺有限的空域。当通过受限空域时,飞机需要减速、稳定或矢量以避开彼此,这导致航班延误、燃油消耗和空中交通管制(ATC)工作量增加。MITRE公司的先进航空系统开发中心(CAASD)开发了一种识别和图形显示受限空域的能力。这种能力提供了一种手段,以确定程序调整,特别是那些利用PBN能力的程序调整,在哪些方面可能导致消除冲突和更有效的行动。开发了一种透明和自动化的方法,并且使用Keyhole标记语言(KML)以表格和图形格式提供了该功能的结果,从而允许将概念轻松地传达给广泛的受众。该功能已成功应用于国家空域系统(NAS)的48个机场,并得到了ATC主题专家的积极评价。
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Identification and visualization of constrained airspaces
The proximity of satellite airports to primary airports increases airspace complexity resulting in all aircraft having to compete for constrained airspace. When passing through constrained airspace, aircraft need to be slowed down, leveled off, or vectored to avoid each other, leading to increases in flight delays, fuel burn and Air Traffic Control (ATC) workload. The MITRE Corporation's Center for Advanced Aviation System Development (CAASD) has developed a capability to identify and graphically display areas of constrained airspace. This capability provides a means to determine where procedural adjustments, particularly those which make use of PBN capabilities, could result in deconflicted and more efficient operations. A transparent and automated methodology was developed and the results from this capability are provided in both a tabulated and graphical format using the Keyhole Markup Language (KML), allowing the concepts to be easily communicated to a wide audience. This capability has been successfully applied at 48 airports across the National Airspace System (NAS) and the findings were reviewed positively by ATC subject matter experts.
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