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ACIS door failure investigation and mitigation procedures

机译:ACIS门故障调查和缓解程序

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NASA's Chandra X-ray Observatory (formerly AXAF) was launched on July 23, 1999 and is currently in orbit performing scientific studies. Chandra is the third of NASA's Great Observatories to be launched, following the Hubble Space Telescope and the Compton Gamma Ray Observatory. One of four primary science instruments on Chandra, and one of only two focal plane instruments, is the Advanced CCD Imaging Spectrometer, or ACIS. The ACIS focal plane and Optical Blocking Filter (OBF) must be launched under vacuum, so a tightly sealed, functioning door and venting subsystem were implemented. The door was opened two and one-half weeks after launch (after most out-gassing of composite materials) and allowed X-rays to be imaged by the ACIS CCD's in the focal plane. A failure of this door to open on-orbit would have eliminated all ACIS capabilities, severely degrading mission science. During the final pre-flight thermal-vacuum test of the fully integrated Chandra Observatory at TRW, the ACIS door failed to open when commanded to do so. This paper describes the efforts, under considerable time pressure, by NASA, its contractors and outside review teams to investigate the failure and to develop modified hardware and procedures which would correct the problem. Of interest is the fact that the root cause of the test failure was never clearly identified despite massive effort. We ultimately focussed on hardware and procedures designed to mitigate the effects of potential, but unproven, failure modes. We describe a frequent real-world engineering situation in which one must proceed on the best basis possible in the absence of the complete set of facts.
机译:美国宇航局的Chandra X射线天文台(以前Axaf)于1999年7月23日推出,目前正在进行科学研究。 Chandra是NASA的三分之一的伟大的观察者,追随哈勃太空望远镜和康普顿伽玛射线天文台。 Chandra的四个主要科学仪器之一,以及仅两个焦平面仪器之一,是高级CCD成像光谱仪或ACIS。 ACIS焦平面和光学阻挡过滤器(OBF)必须在真空下发射,因此实施了紧密密封,运行的门和通风子系统。在发射后(复合材料大部分渗出物)和焦点CCD在焦平面中的X射线将X射线成像,门打开了两周和半周。这门打开轨道的失败将消除所有ACIS能力,严重降级的使命科学。在TRW的完全集成的Chandra天文台的最终飞行前热真空测试期间,ACIS门未能在命令执行时打开。本文介绍了NASA,其承包商和外部审查团队的相当长的时间压力下的努力,以调查失败,并制定改进的硬件和程序,这将纠正问题。感兴趣的是,尽管大规模努力,从未明确识别测试失败的根本原因。我们最终侧重于旨在减轻潜在的效果,但未经证实,故障模式的硬件和程序。我们描述了一种常见的现实工程形势,在没有完整的事实中,必须尽可能地继续前进。

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