评估用于UAS交通管理的C2通信

R. Kerczewski, R. Apaza, A. Downey, John Wang, Konstantin J. Matheou
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引用次数: 12

摘要

美国国家航空航天局(NASA)的无人机系统(UAS)交通管理(UTM)项目致力于开发安全实现民用低空无人机操作所必需的工具和技术。目前,无论何种类型的无人机,都没有成熟的基础设施来实现和安全管理低空空域和无人机操作的广泛使用。UTM技术挑战将开发全面和经过验证的空域操作和集成要求,以安全地实现低空空域的大规模持久访问视距和自主超视距小型无人机。在UTM项目中,一些支持UTM指挥和控制(C2)的通信技术正在研究中。特别是,商用网络蜂窝系统正在测试和评估其满足可靠性、可扩展性、网络安全和冗余要求的能力。美国宇航局格伦研究中心正在研究将这种网络用于UTM C2通信的一些方面。这包括开发一个测试平台,用于在不同高度、不同地形和拓扑中感知和表征机载C2通信环境,测量接收信号强度和干扰等方面。系统性能方面,如链路延迟、切换性能、包丢包率、掉包、覆盖间隙和其他影响UTM操作的方面也将被评估。在本文中,我们探讨了在UTM项目中提出和演示的一些C2方法,可靠性,可用性和其他一般C2性能要求,以及基于商用蜂窝网络评估和分析UTM C2链路的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing C2 communications for UAS traffic management
The National Aeronautics and Space Administration's (NASA) Unmanned Aircraft Systems (UAS) Traffic Management (UTM) project works to develop tools and technologies essential for safely enabling civilian low-altitude UAS operations. Currently there is no established infrastructure to enable and safely manage the widespread use of low-altitude airspace and UAS operations, regardless of the type of UAS. The UTM technical challenge will develop comprehensive and validated airspace operations and integration requirements to safely enable large-scale persistent access to visual line of sight and autonomous beyond visual line of sight small UAS in low-altitude airspace. Within the UTM project, a number of communications technologies to support UTM command and control (C2) are under investigation. In particular, commercial networked cellular systems are being tested and assessed for their ability to meet the reliability, scalability, cybersecurity and redundancy required. NASA Glenn Research Center is studying some of the aspects of employing such networks for UTM C2 communications. This includes the development of a test platform for sensing and characterizing the airborne C2 communications environment at various altitudes and in various terrains and topologies, measuring such aspects as received signal strength and interference. System performance aspects such as latency in the link, handover performance, packet error loss rate, drop outs, coverage gaps and other aspects impacting UTM operation will also be assessed. In this paper we explore some of the C2 approaches being proposed and demonstrated in the UTM project, the reliability, availability and other general C2 performance requirements, and approaches to evaluating and analyzing UTM C2 links based on commercial cellular networks.
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