Physical Aspects of Collision Avoidance

J. Morrel
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引用次数: 1

Abstract

Both ground-based ATC (Air Traffic Control) and airborne CAS (Collision Avoidance Systems) are needed now and in the future to cope with the problem of collision aloft. They should be considered mutually complementary. The limited form of the CAS known as a PWI (Proximity Warning Indicator) is believed not to be sufficient for safety. The two essential elements of a CAS are 1) an indication of the effective maneuver to secure adequate miss distance, and 2) effective means for discovering and assessing the original risk. Miss distance produced by a maneuver never exceeds maneuver displacement. The ratio of the two may be low unless escape time is of the order of 30 seconds or more. In nearly all cases increasing escape time is more effective to insure adequate miss distance than is increasing maneuver severity. The preferred form of CAS would be self-sufficient, but this form appears not to be feasible for basic physical reasons. Cooperative CAS presents many problems, but is believed to have sufficient promise of success to justify careful study and substantial development effort.
避碰的物理方面
地面空中交通管制(ATC)和空中防撞系统(CAS)都需要在现在和未来应对高空碰撞问题。它们应被认为是相辅相成的。被称为PWI(接近警告指示器)的有限形式的CAS被认为不足以保证安全。CAS的两个基本要素是1)有效机动的指示,以确保足够的脱靶距离,2)发现和评估原始风险的有效手段。机动产生的脱靶距离永远不会超过机动位移。两者的比率可能很低,除非逃逸时间为30秒或更长。在几乎所有情况下,增加逃离时间比增加机动强度更有效地确保足够的脱靶距离。首选的CAS形式是自给自足的,但由于基本的物理原因,这种形式似乎不可行。合作型CAS提出了许多问题,但人们相信它有足够的成功希望,值得仔细研究和大量的开发努力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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