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Autonomy Operating System for UAVs: Pilot-in-a-Box

机译:无人机自主操作系统:盒装飞行员

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The Autonomy Operating System (AOS) is an open flight software platform with Artificial Intelligence for smart UAVs. It is built to be extendable with new apps, similar to smartphones, to enable an expanding set of missions and capabilities. AOS has as its foundations NASA's core flight executive and core flight software (cFE/cFS). Pilot-in-a-Box (PIB) is an expanding collection of interacting AOS apps that provide the knowledge and intelligence onboard a UAV to safely and autonomously fly in the National Air Space, eventually without a remote human ground crew. Longer-term, the goal of PIB is to provide the capability for pilotless air vehicles such as air taxis that will be key for new transportation concepts such as mobility-on-demand. PIB provides the procedural knowledge, situational awareness, and anticipatory planning ('thinking ahead of the plane') that comprises pilot competencies. These competencies together with a natural language interface will enable Pilot-in-a-Box to dialogue directly with Air Traffic Management from takeoff through landing. This paper describes the overall AOS architecture, Artificial Intelligence reasoning engines, Pilot-in-a-box competencies, and selected experimental flight tests to date.
机译:自主操作系统(AOS)是具有人工智能的开放式飞行软件平台,适用于智能无人机。它被构建为可扩展到与智能手机类似的新应用程序,以实现一组扩展的任务和功能。 AOS的基础是NASA的核心飞行执行程序和核心飞行软件(cFE / cFS)。机顶盒飞行员(PIB)是不断扩展的互动式AOS应用程序集合,这些应用程序可提供无人驾驶飞机上的知识和情报,从而可以安全,自主地在国家领空飞行,最终无需远程地面人员。从长远来看,PIB的目标是为无人驾驶飞机(例如出租车)提供能力,这对于新的运输概念(如按需机动性)将是关键的。 PIB提供包括飞行员能力在内的程序知识,态势感知和前瞻性计划(“在飞机前思考”)。这些能力以及自然语言界面将使飞行员可以从起飞到着陆直接与空中交通管理部门对话。本文介绍了整个AOS架构,人工智能推理引擎,机舱内飞行员的能力以及迄今为止选定的实验飞行测试。

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