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The Autonomous Precision Landing and Hazard Detection and Avoidance Technology (ALHAT)

机译:自主精确着陆和危险检测与避免技术(ALHAT)

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摘要

As NASA plans to send humans back to the Moon and develop a lunar outpost, technologies must be developed to place humans and cargo safely, precisely, repeatedly, on the lunar surface with the capability to avoid surface hazards. Exploration Space Architecture Study requirements include the need for global lunar surface access with safe, precise landing without lighting constraints on terrain that may have landing hazards for human scale landing vehicles. Landing accuracies of perhaps 1,000 meters for sortie crew missions to 10 s of meters for Outpost class missions are required. The Autonomous precision Landing Hazard Avoidance Technology (ALHAT) project will develop the new and unique descent and landing Guidance, Navigation and Control (GNC) hardware and software technologies necessary for these capabilities. The ALHAT project will qualify a lunar descent and landing GNC system to a Technology Readiness Level (TRL) of 6 capable of supporting lunar crewed, cargo, and robotic missions. The (ALHAT) development project was chartered by NASA Headquarters in October 2006. The initial effort to write a project plan and define an ALHAT Team was followed by a fairly aggressive research and analysis effort to determine what technologies existed that could be developed and applied to the lunar landing problems indicated above. This paper describes the project development, research, analysis and concept evolution that has occurred since the assignment of the project. This includes the areas of systems engineering, GNC, sensors, sensor algorithms, simulations, fielding testing, laboratory testing, Hardware-In-The-Loop testing, system avionics and system certification concepts.
机译:当NASA计划将人类送回月球并建立月球哨站时,必须开发出将人类和货物安全,精确,重复地放置在月球表面上并具有避免地表危害的技术。 《探索空间建筑研究》的要求包括需要在安全,精确的着陆条件下实现全球月球表面通行,而在可能对人类规模的着陆车造成着陆危险的地形上没有照明限制。对于出动机组人员任务而言,着陆精度可能需要1000米,而对于前哨级任务则需要10 s米的着陆精度。自主精确着陆危险规避技术(ALHAT)项目将开发这些功能所需的新颖独特的下降和着陆制导,导航和控制(GNC)硬件和软件技术。 ALHAT项目将使月球下降和着陆GNC系统达到6级的技术就绪水平(TRL),能够支持登月人员,货物和机器人任务。 (ALHAT)开发项目由NASA总部于2006年10月授权。最初的工作是编写项目计划并定义ALHAT团队,随后进行了相当积极的研究和分析工作,以确定可以开发和应用哪些技术。上面指出的登月问题。本文介绍了自项目分配以来发生的项目开发,研究,分析和概念演变。这包括系统工程,GNC,传感器,传感器算法,模拟,现场测试,实验室测试,硬件在环测试,系统航空电子和系统认证概念等领域。

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