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Infrared On-orbit RCC Inspection with the EVA Camera: Development of Flight Hardware from a COTS System

机译:使用EVA摄像机进行红外在轨RCC检查:通过COTS系统开发飞行硬件

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摘要

In November 2004, NASA's Space Shuttle Program approved the development of the Extravehicular (EVA) Infrared (IR) Camera to test the application of infrared thermography to on-orbit reinforced carbon-carbon (RCC) damage detection. A multi-center team composed of members from NASA's Johnson Space Center (JSC), Langley Research Center (LaRC), and Goddard Space Flight Center (GSFC) was formed to develop the camera system and plan a flight test. The initial development schedule called for the delivery of the system in time to support STS-115 in late 2005. At the request of Shuttle Program managers and the flight crews, the team accelerated its schedule and delivered a certified EVA IR Camera system in time to support STS-114 in July 2005 as a contingency. The development of the camera system, led by LaRC, was based on the Commercial-Off-the-Shelf (COTS) handheld IR camera. An assessment of the camera system in regards to space-flight operation was critical to the project. This paper discusses the space-flight assessment and describes the significant modifications required for EVA use by the astronaut crew. The on-orbit inspection technique will be demonstrated during the third EVA of STS-121 in September 2005 by imaging damaged RCC samples mounted in a box in the Shuttle's cargo bay.
机译:2004年11月,美国国家航空航天局(NASA)的航天飞机计划批准了车外(EVA)红外(IR)摄像机的开发,以测试红外热成像在轨道上增强碳-碳(RCC)损伤检测中的应用。由美国国家航空航天局(NASA)的约翰逊太空中心(JSC),兰里研究中心(LaRC)和戈达德太空飞行中心(GSFC)的成员组成的多中心团队组成,以开发摄像头系统并计划飞行测试。最初的开发进度要求在2005年底及时交付系统以支持STS-115。应航天飞机项目经理和飞行机组的要求,该团队加快了进度,并及时交付了经认证的EVA红外摄像头系统,以在2005年7月为STS-114提供支持。由LaRC领导的摄像头系统的开发基于现成的商用手持式红外摄像头。对摄像机系统进行太空飞行的评估对于该项目至关重要。本文讨论了太空飞行评估并描述了宇航员使用EVA所需的重大修改。在轨检查技术将在2005年9月的STS-121的第三个EVA中通过对装在航天飞机货舱中的盒子中受损的RCC样品进行成像来演示。

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