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首页> 外文期刊>Journal of Aviation Technology and Engineering >Integration of Radar System with GPS-Based Traffic Alert and Collision Avoidance System (TCAS) for Approach Control Separation
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Integration of Radar System with GPS-Based Traffic Alert and Collision Avoidance System (TCAS) for Approach Control Separation

机译:雷达系统与基于GPS的交通预警和防撞系统(TCAS)的集成,用于进近控制分离

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摘要

The air traffic control system is a vast network of people and necessary navigational equipment that ensures the safe operation of commercial and private aircraft throughout the world. Air traffic controller service is responsible for area, approach and aerodrome control. Aircraft fatal accident data for commercial jet airplanes between 1959 and 2008 show that 36% of the accidents happen in the final approach and landing phase, possibly due to mechanical failure or human error resulting from poor communication between the pilot and air traffic controller. This paper presents an integration of a radar system with a GPS-based Traffic Alert and Collision Avoidance System (TCAS) for approach control separation between all instrument flight rules (IFR) flights and between IFR flights and visual flight rules (VFR) flights operated as controlled flights. The integration is simulated using MATLAB. Results of the simulation show that aircraft separation is easier and safer than relying only on an air traffic controller. We note, however, that the service of air traffic controllers is still required for successful aerodrome control.
机译:空中交通管制系统是一个庞大的人员网络和必要的导航设备,可确保全球商用和私人飞机的安全运行。空中交通管制员服务负责区域,进近和机场的控制。 1959年至2008年之间商用喷气飞机的飞机致命事故数据显示,有36%的事故发生在最后进场和着陆阶段,这可能是由于飞行员和空中交通管制员之间沟通不畅导致的机械故障或人为失误。本文介绍了雷达系统与基于GPS的交通警报和防撞系统(TCAS)的集成,用于在所有仪表飞行规则(IFR)飞行之间以及IFR飞行和可视飞行规则(VFR)飞行之间按进近控制方式进行分离受控航班。集成是使用MATLAB仿真的。仿真结果表明,与仅依靠空中交通管制员相比,飞机分离更容易,更安全。但是,我们注意到,成功地控制机场仍然需要空中交通管制员的服务。

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