最后进近时综合飞行和交通管理要求

J. Sørensen, C. Hunter, M. Shen
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引用次数: 3

摘要

指出在最后进近过程中,由于飞机间距控制不力,造成了大量的跑道吞吐量损失。解决方案是通过数据链将终端空中交通管理(ATM)自动化过程与驾驶舱航空电子设备集成。最终集成tm座舱设计的组件可能包括考虑尾流和跑道占用空间约束的ATM间隔算法;所需最终进近速度剖面的下行链路;上行所需的间距和阈值穿越次数;一个平视交通显示器,提供飞行员间距指导;有飞行管理系统,驱动飞机满足授时要求;以及一个ATM显示器,以便对着陆过程进行密切监控。提出了开发这种集成式atm座舱概念所需的研究。
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Requirements for integrated flight and traffic management during final approach
It is pointed out that significant runway throughput is lost due to ineffective control of aircraft spacing during final approach. The solution is to integrate the terminal air traffic management (ATM) automation process with cockpit avionics via data link. Components of the ultimate integrated TM-cockpit design might include an ATM spacing algorithm that accounts for wake vortex and runway occupancy spacing constraints; downlink of desired final approach speed profile; uplink of desired spacing and threshold crossing times; a heads-up traffic display to provide pilot spacing guidance; a flight management system to drive the aircraft to meet timing requirements; and an ATM display to allow close monitoring of the landing process. The research required to develop this integrated ATM-cockpit concept is presented.<>
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