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Simulation and Flight Test Capability for Testing Prototype Sense and Avoid System Elements

机译:仿真和飞行测试能力,用于测试原型感知并避免系统元素

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摘要

NASA Langley Research Center (LaRC) and The MITRE Corporation (MITRE) have developed, and successfully demonstrated, an integrated simulation-to-flight capability for evaluating sense and avoid (SAA) system elements. This integrated capability consists of a MITRE developed fast-time computer simulation for evaluating SAA algorithms, and a NASA LaRC surrogate unmanned aircraft system (UAS) equipped to support hardware and software in-the-loop evaluation of SAA system elements (e.g., algorithms, sensors, architecture, communications, autonomous systems), concepts, and procedures. The fast-time computer simulation subjects algorithms to simulated flight encounters/ conditions and generates a fitness report that records strengths, weaknesses, and overall performance. Reviewed algorithms (and their fitness report) are then transferred to NASA LaRC where additional (joint) airworthiness evaluations are performed on the candidate SAA system-element configurations, concepts, and/or procedures of interest; software and hardware components are integrated into the Surrogate UAS research systems; and flight safety and mission planning activities are completed. Onboard the Surrogate UAS, candidate SAA system element configurations, concepts, and/or procedures are subjected to flight evaluations and in-flight performance is monitored. The Surrogate UAS, which can be controlled remotely via generic Ground Station uplink or automatically via onboard systems, operates with a NASA Safety Pilot/Pilot in Command onboard to permit safe operations in mixed airspace with manned aircraft. An end-to-end demonstration of a typical application of the capability was performed in non-exclusionary airspace in October 2011; additional research, development, flight testing, and evaluation efforts using this integrated capability are planned throughout fiscal year 2012 and 2013.
机译:NASA兰利研究中心(LaRC)和MITER Corporation(MITRE)已开发并成功展示了一种集成的“模拟到飞行”功能,用于评估感知和避免(SAA)系统元素。这项综合功能包括由MITER开发的用于评估SAA算法的快速计算机仿真,以及可支持SAA系统元素(例如算法,硬件,软件)的硬件和软件在环评估的NASA LaRC替代无人机系统(UAS)。传感器,架构,通信,自主系统),概念和程序。快速的计算机模拟使算法经受模拟的飞行遭遇/情况影响,并生成适合度报告,该报告记录优势,劣势和总体性能。然后将经过审查的算法(及其适用性报告)传输到NASA LaRC,在此对候选SAA系统元素配置,感兴趣的概念和/或程序进行附加的(联合)适航性评估;软件和硬件组件已集成到代理UAS研究系统中;飞行安全和任务计划活动已经完成。在代理UAS上,对候选SAA系统元素配置,概念和/或程序进行飞行评估,并监视飞行中的性能。代理无人机系统可以通过通用地面站上行链路进行远程控制,也可以通过机载系统自动控制,与机载NASA安全飞行员/指挥官一起运行,可以在有人驾驶飞机的混合空域中安全运行。 2011年10月,在非排他性领空进行了该能力典型应用的端到端演示;计划在2012和2013财政年度使用此集成功能进行其他研究,开发,飞行测试和评估工作。

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