China Initial 4D Flight Trial Evaluation

Daozhong Feng, Kaiquan Cai, Yanbo Zhu, Liang Zhao
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Abstract

In order to improve air traffic operational safety and efficiency in China, Civil Aviation Administration of China (CAAC) and Ministry of Science and Technology (MOST) of China launched the project of Initial Four-Dimensional (I4D) flight trial in 2015. The project aims to evaluate the I4D operational concept and the performance of the technical enablers. The flight trial was performed on 20th March 2019. An A320 aircraft equipped with I4D avionics flew between Tianjin Binhai International Airport (ZBTJ) and Guangzhou Baiyun International Airport (ZGGG). In this paper, the performance of flight trial was evaluated, including Aeronautical Telecommunication Network (ATN) performance, Automatic Dependent Surveillance-Contract Extended Projected Profile (ADS-C EPP) performance, Controller Pilot Data Link Communications (CPDLC) service performance, Controlled Time of Arrival (CTA) operations. The evaluation shows I4D offers safety gains with better air and ground trajectory information sharing. The efficiency of Air Traffic Management (ATM) system can be improved as the flight time of arrival is more predictable and precisely controllable. Meanwhile, these changes in operation can reduce both pilot and controller workload by using CPDLCC/ADS-C. Specifically, 62.7% of the regular communication time can be saved. Besides, Top of Descent (TOD) changes during the progress of CTA operations, thus, its information is necessary to help controllers. In addition, some suggestions are derived from this trial. The analyses and evaluation in this paper will help shed light on policies development of I4D implementation.
中国首次四维飞行试验评估
为了提高中国空中交通运行的安全性和效率,中国民用航空局(CAAC)和中国科技部(MOST)于2015年启动了初始四维(I4D)飞行试验项目。该项目旨在评估I4D操作概念和技术使能器的性能。飞行试验于2019年3月20日进行。一架配备I4D航空电子设备的A320飞机在天津滨海国际机场(ZBTJ)和广州白云国际机场(ZGGG)之间飞行。本文对飞行试验的性能进行了评估,包括航空电信网络(ATN)性能、自动相关监视-合同扩展投影曲线(ADS-C EPP)性能、管制员驾驶数据链通信(CPDLC)服务性能、受控到达时间(CTA)操作。评估表明,I4D提供了更好的空中和地面轨迹信息共享的安全收益。提高飞机到达时间的可预测性和精确可控性,可以提高空中交通管理系统的效率。同时,这些操作变化可以通过使用CPDLCC/ADS-C来减少飞行员和管制员的工作量。具体来说,可以节省62.7%的常规沟通时间。此外,在CTA操作的过程中,TOD (Top of Descent)会发生变化,因此需要它的信息来帮助管制员。此外,本文还提出了一些建议。本文的分析和评估将有助于阐明I4D实施的政策制定。
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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