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Collision risk analysis for alternate airspace architectures

机译:备用空域架构的碰撞风险分析

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This paper investigates an airspace architecture in which the core requirement is maintaining a target level of collision risk throughout the airspace, accounting for a diversity of aircraft types and a diversity of collision avoidance capabilities in different regions of the airspace. Because collision risk depends on both the density of aircraft and the collision avoidance capabilities of the aircraft involved, aircraft with better collision avoidance capabilities are able to fly in regions of higher density. Conversely, aircraft with lesser collision avoidance capabilities are restricted to less dense airspace or off-peak hours. This paper provides a framework for evaluating the proposed architecture, including a framework for evaluating collision risk based on the numbers and types of aircraft in the airspace and a framework for specifying the corresponding airspace admittance function. Properties of the airspace admittance function are explored and airspace designs are suggested based on the results. In particular, if high-equipped aircraft are not adversely affected by low-equipped aircraft, from a collision avoidance perspective, then the aircraft should fly together in the same airspace to maximize capacity. But otherwise, it may be better to segregate the aircraft types into distinct regions of airspace.
机译:本文研究了一种空域体系结构,其核心要求是在整个空域中保持碰撞风险的目标水平,这说明了不同类型的飞机和在空域不同区域的碰撞避免能力的多样性。因为碰撞风险取决于飞机的密度和所涉及飞机的防撞能力,所以具有更好的防撞能力的飞机能够在更高密度的区域飞行。相反,具有较小的避撞能力的飞机仅限于密度较小的空域或非高峰时间。本文提供了一种评估提议的架构的框架,包括一个基于空域中飞机数量和类型的碰撞风险评估框架,以及一个指定相应空域导纳函数的框架。探索了空域导纳函数的性质,并根据结果提出了空域设计的建议。尤其是,如果从避撞的角度来看,高装备的飞机不会受到低装备的飞机的不利影响,则飞机应在同一空域内一起飞行以最大化容量。但是否则,最好将飞机类型划分到不同的空域区域。

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