An agent oriented analysis and modeling of airborne capabilities for trajectory based operations

J. M. Canino, L. Gómez, J. García, J. Besada, J. Casar
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引用次数: 2

Abstract

Current and future air traffic is requiring new procedures and systems to achieve a greater automation of air-traffic operations. Particular difficulty presents the automation of arrival air-traffic operations in terminal areas due to aircraft speeds and environment variability into a delimited airspace where multiple aircraft converge. Several projects have proposed guidelines to implement new operational concepts as well as airborne and ground systems to carry out corresponding procedures. Developing procedures and systems are closely related. Therefore, usually it requires to analyze and to design them in a combined manner. In this paper we present an agent-oriented analysis and modeling of airborne systems capabilities to perform automated arrival and approach procedures based on user preference trajectories. A detailed architecture model of airborne capabilities is achieved through a methodological analysis of an arrival traffic scenario within the trajectory based operations paradigm.
面向智能体的机载弹道作战能力分析与建模
当前和未来的空中交通需要新的程序和系统来实现空中交通操作的更大程度的自动化。特别困难的是,由于飞机速度和多架飞机会聚的划定空域的环境变化,终点区到达空中交通操作的自动化。有几个项目提出了执行新业务概念的准则以及执行相应程序的机载和地面系统。开发程序和系统是密切相关的。因此,通常需要以组合的方式对它们进行分析和设计。在本文中,我们提出了基于用户偏好轨迹执行自动到达和接近程序的机载系统能力的面向代理的分析和建模。通过在基于轨迹的操作范例中对到达交通场景进行方方法论分析,实现了机载能力的详细架构模型。
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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