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UAS Detect and Avoid - Alert Times and Pilot Performance in Remaining Well Clear

机译:UAS检测和避免 - 警报时间和试验性能在剩余清晰中

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With the rapid growth of Unmanned Aircraft Systems (UAS), NASA was called upon to examine crucial operational and safety concerns regarding the integration of UAS into the National Airspace System (NAS) in collaboration with the Federal Aviation Administration (FAA) and industry. Key research efforts paper focused on understanding and developing requirements for Detect and Avoid (DAA) systems and making sure they are interoperable with Collision Avoidance (CA) technologies. These requirements detail necessary performance of a DAA system designed to help the UAS pilot maintain DAA Well Clear (DWC) from intruder aircraft so that safe separation is retained. NASA Langley's Human-in-the-Loop (HITL) simulation study known as Collision Avoidance, Self-Separation, and Alerting Times (CASSAT) addressed these DAA requirements in a two-phase study. The first phase examined eleven active air traffic controllers. The second phase, addressed in this paper, examined twelve pilots' interactions with DAA systems at simulated UAS ground control stations (GCS).
机译:随着无人驾驶飞机系统(UAS)的快速增长,美国宇航局被要求审查与联邦航空管理局(FAA)和行业合作,审查关于将UAS纳入国家空域系统(NAS)的至关重要的运营和安全问题。主要研究努力摘要专注于了解和开发检测和避免(DAA)系统的要求,并确保它们与碰撞避免(CA)技术互操作。这些要求详细介绍了DAA系统的必要性能,旨在帮助UAS试点维护入侵者飞机的DAA清晰(DWC),以便保留安全分离。 NASA Langley的LOOP(HITL)仿真研究称为碰撞避免,自分离和警报时间(CASSAT)在两相研究中解决了这些DAA要求。第一阶段检查了11个活性空中交通管制员。本文解决的第二阶段,在模拟UAS接地控制站(GCS)中,将十二个导频与DAA系统的交互进行了检查。

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