无人驾驶出租车(UAM)垂直起降安装标准研究

Ja-Seong Choi, Seok-hyun Lee, Jeongseon Baek, Ho-won Hwang
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引用次数: 3

摘要

UAM(城市空中机动)系统在1960 ~ 1970年代发展为直升机,在1980年代发展为倾转旋翼机,在2000年代发展为小型飞机运输系统,在2010年代发展为电动垂直起降(eVTOL);因此,早期的直升机场已经演变成现在的垂直机场。垂直起降地点是成功引进UAM的重要因素,同时也是解决空中交通管制(ATC)、空中安全和噪音问题的重要因素。然而,目前还没有国内或国际的安装标准和指南。因此,在本研究中,安装标准的制定参考了国内外案例研究、ICAO标准和MIT研究论文。研究建议将最后进近及起飞区(FATO)的标准定为1.5D,着地及起飞区(TLOF)为1D,安全区(SA)为1.5D。它还建议在“无人机利用促进和基础法案”中增加“UAM垂直端口安装标准”。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study on Vertiport Installation Standard of Drone Taxis(UAM)
UAM(Urban Air Mobility) systems have evolved in the form of helicopters in the 1960∼1970s, tiltrotors in the 1980s, small aircraft transportation systems in the 2000s, and electric-powered Vertical Take-Off and Landing (eVTOL) in the 2010s; accordingly, the early heliport has evolved to its current form of a Vertiport. Vertical Takeoff and Landing Sites, Vertiports, are important factors for the successful introduction of UAM, along with the resolution of air traffic control (ATC), air security, and noise problems. However, there are no domestic or international installation standards and guidelines yet. Therefore, in this study, installation standards were prepared by referring to domestic and international case studies, ICAO standards, and MIT research papers. The study proposes to establish standards for Final Approach and Takeoff Area (FATO) as 1.5D, 1D for Touchdown and Lift-Off Area (TLOF), and 1.5D for Safety Area (SA). It also proposes to add “UAM Vertiport Installation Standards” to the 「Act on the Promotion and Foundation of Drone Utilization, Drone Act」.
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