公制(单位)
空中交通管制
空中交通管理
计算机科学
运输工程
结果(博弈论)
航程(航空)
操作员(生物学)
可视化
国家空域系统
实时计算
模拟
交通拥挤
多样性(控制论)
分离(统计)
运筹学
基线(sea)
航空
恶劣天气
测距
自由飞行
工程类
作者
Lilly Spirkovska,Chetan S. Kulkarni,Jason Watkins,Lynne Martin
出处
期刊:
日期:2022-06-20
被引量:5
摘要
View Video Presentation: https://doi.org/10.2514/6.2022-3403.vid Effective flight planning requires information about a variety of potential threats, such as adverse weather or airspace restrictions, and about alternatives available if unforeseen events occur. Expected traffic along the route of flight is also essential to a safe outcome so that, for example, adequate fuel/energy supply can be loaded prior to flight. A dynamic density (DD) metric is introduced for the emerging urban air mobility (UAM) concept to predict airspace congestion that may lead to loss of separation between aircraft or less efficient operations. Using inspiration from dynamic density metric research for traditional air traffic management and a two-way highway analogy,we develop dynamic density metric for a portion of airspace (aUAM corridor) that aggregates the impact from five factors: aircraft density, density of populous clusters, mean number of aircraft in populous clusters, mean distance between aircraft, and minimum distance between aircraft. This works describes our methodology, rationale, use cases, and visualization techniques to efficiently present the DD metric to an operator for informed decision making. We also present an approach for validating the metric. However, validation remains part of future work.
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