Optimizing Lateral Airway Offset for Collision Risk Mitigation Using Differential Evolution

S. Alam, M. Hossain, Fareed Al-Alawi, Fathi Al-Thawadi
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引用次数: 5

Abstract

A majority of aircraft are now using Global Navigation Satellite System (GNSS) for navigation. This has led to an effect of reducing the magnitude of lateral deviations from the route center line and, consequently, increasing the probability of a collision, should a loss of vertical separation between aircraft on the same route occur. The International Civil Aviation Organization (ICAO) has introduced Strategic Lateral Offset Procedures (SLOP) that allow suitably equipped aircrafts to fly with 1nmi or 2nmi lateral offset to the right of airway centerline in oceanic airspace. Very few aircraft, however, are using the SLOP procedure because of the lack of understanding of its safety benefits and implementation issues in identifying correct lateral offset that can reduce the collision risk. This paper proposes an Evolutionary Computation framework using Differential Evolution process to identify optimal lateral offsets for each airway in a given airspace such that it reduces the overall collision risk. Airwa...
利用差分进化优化侧气道偏移以降低碰撞风险
大多数飞机现在使用全球导航卫星系统(GNSS)进行导航。这样做的结果是减少了偏离航线中心线的横向偏差幅度,因此,如果同一航线上的飞机失去垂直距离,就会增加碰撞的可能性。国际民用航空组织(ICAO)引入了战略侧向偏移程序(SLOP),允许适当装备的飞机在海洋空域飞行时向航路中心线右侧偏移1海里或2海里。然而,很少有飞机使用SLOP程序,因为缺乏对其安全效益的理解,以及在确定可以降低碰撞风险的正确横向偏移量方面的实施问题。本文提出了一个使用差分进化过程的进化计算框架,以确定给定空域中每个航路的最佳横向偏移量,从而降低整体碰撞风险。Airwa……
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