低空飞行TCAS解决方案

Chin-E. Lin, Yiyong Wu
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引用次数: 7

摘要

高密度小型飞机对低空飞行的安全威胁越来越大。与一般的航空运输飞机不同,小型飞机没有安装主动防撞装置。通过现有的监视通信,可以对小型飞机进行实时监视,同时可以采取适当的隔离措施。提出了一种交通预警与避碰系统(TCAS)算法,为低空小型飞机提供所需的冲突解决方案。基于目视飞行规则(VFR)下的自动相关监视(ADS)概念,TCAS操作既可以在地面监视计算机上实现,也可以在机载电子飞行仪表系统(EFIS)上实现。飞机冲突将从监视信息中发现。在地面计算机和机载EFIS上生成警报后,可以创建简单的交通解决规则以避免碰撞。本文定义了交通通知(TA)和分辨率通知(RA),并设计了小型飞机的简单避碰控制。在这一发展中,超轻型飞机的飞行被用于在小空域创建实际飞行数据。为了研究TCAS在地面计算机和机载EFIS上的性能,对几种可行方案进行了仿真测试。研究结果为低空飞行提供了更广泛的航空安全性。
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TCAS solution for low altitude flights
High density small aircrafts increasingly threaten flight safety to low altitude flights. Unlike the general air transport aircrafts, small aircrafts do not install with active detection for collision avoidance. Through available surveillance communication, small aircraft can be monitored in real time while appropriate separation can be applied. A Traffic Alert and Collision Avoidance System (TCAS) algorithm is introduced to offer required conflict resolution to small aircrafts in low altitude. Based on Automatic Dependent Surveillance (ADS) concept under visual flight rule (VFR), TCAS operation can be built on ground surveillance computer as well as the airborne electronic flight instrument system (EFIS). Aircraft conflict will be detected from the surveillance information. Simple traffic resolution rules can be created for collision avoidance after alerts being generated on the ground computer and on the airborne EFIS. This paper defines the traffic advisory (TA) and resolution advisory (RA), and designs simple avoidance control to small aircrafts. In this development, ultra-light aircraft flights are operated to create the actual flight data in a small airspace. Several feasible scenarios are tested in simulations to look into the TCAS performance on the ground computer and the airborne EFIS. The results offer a wider aviation safety to low altitude flights.
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