冲突检测和解决的复杂性与空中交通管制管理和研究分析交织在一起

Fatemeh shakibafard, M. Menhaj, Amir Maleknia
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引用次数: 0

摘要

本文是一项研究计划的附带内容,该计划旨在寻找一种自动化系统来管理民用飞行走廊,其中人类机构的工具几乎完全转移到复杂的多层数据电子数学分析仪上。飞机管理的维数性、概率性、冲突检测、冲突解决、机动、全局多重性等六大特性已成为提出的自动化的重点。由于各种原因,飞机代理和空中交通管制元代理之间普遍存在“有序”的相互通信这一未被触及的基准话语一直是神圣不可侵犯的,以避免在任何可能的风险都会带来各种巨大损失的贩运领域发生过度革命性的话语变化。本文作者采用了一种严格的、分层的数学-语言行为编程方法,使Prolog的格式能够将单个控制器在每个实时实例中只能与一个飞行物体接触的责任交付给在同一实时实例中控制“多个”航空航天悬浮点的某些机器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The complexity of conflict detection and resolution as interwoven with the air traffic control management and research analysis
This paper is incidental to a research program of finding an automation system to govern the civil flight corridors in which the instrumentality of human agency is all but totally devolved onto a complex, multi-layered data electro-mathematical analyzer. Six major actualities comprising of dimensionality, probabilisticality, conflict detection, conflict resolution, maneuvering, global multiplicity of aircraft management, have become the focus of the proposed automation. The un-touched bench mark discourse of the prevalency of an “orderer-ordered” intercommunication between the aircraft agents and the Air Traffic Control meta-agent(s) has been kept sacrosanct for a variety of reasons to avert an over-revolutionary discourse change in a sphere of trafficking where any probable risk entails extraordinary losses of all sorts. A cutaneously rigid, layerized maths-speech act programming adapted by the present authors makes it feasible in the format of Prolog to deliver the responsibility of a mono-controller only capable of being in touch with just one flying object at each real-time instance on to some machine governing “more-than-several” aerospace SUSPENDING DOTS at the very same real-time instance.
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