论文标题

UAM的要求和技术:沟通,导航和监视

Requirements and Technologies Towards UAM: Communication, Navigation, and Surveillance

论文作者

Erturk, M. Cenk, Hosseini, Nozhan, Jamal, Hosseinali, Sahin, Alphan, Matolak, David, Haque, Jamal

论文摘要

Urban Air Mobility(UAM)是创建空降运输系统的概念,该系统在命令(RPIC)中使用船上飞行员和/或远程飞行员(RPIC)或具有完全自主的架构在城市环境中运行。尽管乘客交通大部分将在城市环境中及其附近,但也可能考虑使用空中货物,也许是在城市之间。这种功能正在推动当前的通信,导航和监视(CNS) /空中交通管理(ATM)系统,这些系统旨在支持这些类型的航空场景。 UAM飞机将在拥挤的环境中运行,中枢神经系统和ATM系统需要在不断发展的同时为UAM操作的安全提供完整性,鲁棒性,安全性和非常高的可用性。由于UAM正在学术界和政府机构的研究中,该行业正在推动飞机原型的技术。关键的UAM要求来自命令和控制(C2)(尤其是针对RPIC场景),乘客和飞行系统的数据连接,无人飞机系统(UAS)到UAS通信以避免碰撞以及数据交换以进行定位和监视。在本文中,我们通过其操作概念研究了连接性的挑战和目前对强大的UAM体系结构的要求。此外,我们回顾了对UAM的现有/潜在CNS技术,即第三代合作伙伴项目(3GPP)第五代(5G)新广播(NR),导航检测和避免(DAA)和卫星系统以及卫星系统以及对UAM CNS架构的未来公路映射的结论。

Urban air mobility (UAM) is a concept for creating an airborne transportation system that operates in urban settings with an on-board pilot and/or remote pilot in command (RPIC), or with a fully autonomous architecture. Although the passenger traffic will be mostly in and near urban environments, UAM is also being considered for air cargo, perhaps between cities. Such capability is pushing the current communication, navigation and surveillance (CNS) / air traffic management (ATM) systems that were not designed to support these types of aviation scenarios. The UAM aircraft will be operating in a congested environment, where CNS and ATM systems need to provide integrity, robustness, security, and very high availability for safety of UAM operations while evolving. As UAM is under research by academia and government agencies, the industry is driving technology towards aircraft prototypes. Critical UAM requirements are derived from command and control (C2) (particularly for RPIC scenario), data connectivity for passengers and flight systems, unmanned aircraft systems (UAS) to UAS communication to avoid collision, and data exchange for positioning and surveillance. In this paper, we study connectivity challenges and present requirements towards a robust UAM architecture through its concept of operations. In addition, we review the existing/potential CNS technologies towards UAM, i.e., 3rd generation partnership project (3GPP) fifth generation (5G) new radio (NR), navigation detect & avoid (DAA), and satellite systems and present conclusions on a future road-map for UAM CNS architecture.

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