ADS-B监控在RPAS DAA系统中的应用

V. Di Vito, G. Torrano
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引用次数: 3

摘要

自动依赖监视广播设备日益成为支持航空领域协同监视的基本手段,包括有人驾驶常规飞机和无人驾驶飞行器。ADS-B的重要性因其支持探测和避免(DAA)系统的能力而进一步增加,该系统既可以作为载人车辆上的人类飞行员的决策支持系统,也可以作为远程驾驶飞机系统(RPAS)下的远程飞行员的决策支持系统,还可以作为执行全自动任务的无人驾驶飞行器上的自动系统。这些考虑强调ADS-B技术能够发挥使能技术的作用,实现有人驾驶车辆的单飞行员操作,并将无人驾驶车辆(全自动或远程驾驶)集成到空中交通管理(ATM)系统中。本文提出了一种利用ADS-B作为协同监视传感器支持探测和回避应用的系统设计方案。特别地,这里概述的系统是一个用于分离保证和避免碰撞的集成系统,是为在RPAS领域实现而设计的。因此,本文首先回顾了CIRA设计的DAA系统的发展,然后概述了基于ADS-B的DAA系统。最后,给出了一些数值应用来说明系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ADS-B Surveillance Application for RPAS DAA System
Automatic Dependent Surveillance Broadcast equipment is increasingly becoming a fundamental means to support cooperative surveillance in the aviation section, including both manned conventional aircraft and unmanned aerial vehicles. The importance of the ADS-B is further increased by its ability to support Detect and Avoid (DAA) systems, which are able to act both as decision support systems for human pilot onboard manned vehicles and for remote pilots in case of Remotely Piloted Aircraft Systems (RPAS) and as automatic systems implemented onboard unmanned aerial vehicles performing fully automatic missions. Such considerations emphasize that the ADS-B technology is able to play the role of enabling technology for the implementation of single pilot operations on manned vehicles and for the integration of unmanned vehicles (totally automatic or remotely piloted) into the Air Traffic Management (ATM) system. In this paper, a system is outlined that has been designed by CIRA in order to exploit the ADS-B as cooperative surveillance sensor supporting the Detect and Avoid applications. In particular, the systems that is here outlined is an integrated system for Separation Assurance and Collision Avoidance, designed for the implementation in the RPAS domain. In the paper, therefore, first a review of the evolution of the CIRA designed system for DAA is provided and, then, an outline of the ADS-B based DAA systems is reported. Finally, some numerical applications are indicated to show the system behavior.
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