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Interfacing and Verifying ALHAT Safe Precision Landing Systems with the Morpheus Vehicle

机译:与Morpheus车辆对接并验证ALHAT安全精密着陆系统

摘要

The NASA Autonomous precision Landing and Hazard Avoidance Technology (ALHAT) project developed a suite of prototype sensors to enable autonomous and safe precision landing of robotic or crewed vehicles under any terrain lighting conditions. Development of the ALHAT sensor suite was a cross-NASA effort, culminating in integration and testing on-board a variety of terrestrial vehicles toward infusion into future spaceflight applications. Terrestrial tests were conducted on specialized test gantries, moving trucks, helicopter flights, and a flight test onboard the NASA Morpheus free-flying, rocket-propulsive flight-test vehicle. To accomplish these tests, a tedious integration process was developed and followed, which included both command and telemetry interfacing, as well as sensor alignment and calibration verification to ensure valid test data to analyze ALHAT and Guidance, Navigation and Control (GNC) performance. This was especially true for the flight test campaign of ALHAT onboard Morpheus. For interfacing of ALHAT sensors to the Morpheus flight system, an adaptable command and telemetry architecture was developed to allow for the evolution of per-sensor Interface Control Design/Documents (ICDs). Additionally, individual-sensor and on-vehicle verification testing was developed to ensure functional operation of the ALHAT sensors onboard the vehicle, as well as precision-measurement validity for each ALHAT sensor when integrated within the Morpheus GNC system. This paper provides some insight into the interface development and the integrated-systems verification that were a part of the build-up toward success of the ALHAT and Morpheus flight test campaigns in 2014. These campaigns provided valuable performance data that is refining the path toward spaceflight infusion of the ALHAT sensor suite.
机译:NASA自主精确着陆和避险技术(ALHAT)项目开发了一套原型传感器,可在任何地形照明条件下实现机器人或乘员车的自主和安全精确着陆。 ALHAT传感器套件的开发是美国国家航空航天局(NASA)的一项跨工作,最终是集成和测试各种地面车辆以注入未来的航天应用。在专门的测试架,移动卡车,直升机飞行以及NASA Morpheus自由飞行,火箭推进飞行测试飞行器上进行了飞行测试,进行了地面测试。为了完成这些测试,开发并遵循了繁琐的集成过程,包括命令和遥测接口,以及传感器对准和校准验证,以确保有效的测试数据能够分析ALHAT以及制导,导航和控制(GNC)性能。这对于Morpheus上的ALHAT的飞行测试活动尤其如此。为了将ALHAT传感器连接到Morpheus飞行系统,开发了一种自适应的命令和遥测体系结构,以允许逐个传感器的接口控制设计/文档(ICD)的发展。此外,还开发了单个传感器和车载验证测试,以确保车辆上的ALHAT传感器的功能正常运行,以及将每个ALHAT传感器集成到Morpheus GNC系统中时的精度测量有效性。本文提供了一些关于界面开发和集成系统验证的见解,这些知识是2014年ALHAT和Morpheus飞行测试活动取得成功的基础。这些活动提供了宝贵的性能数据,正在完善通往航天的道路注入ALHAT传感器套件。

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