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Jitter Test Program and On-Orbit Mitigation Strategies for Solar Dynamic Observatory

机译:太阳能天文台的抖动测试程序和轨道缓解策略

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The Solar Dynamic Observatory (SDO) aims to study the Sun's influence on the Earth, the source, storage, and release of the solar energy, and the interior structure of the Sun. During science observations, the jitter stability at the instrument focal plane must be maintained to less than a fraction of an arcsecond for two of the SDO instruments. To meet these stringent requirements, a significant amount of analysis and test effort has been devoted to predicting the jitter induced from various disturbance sources. This paper presents an overview of the SDO jitter analysis approach and test effort performed to date. It emphasizes the disturbance modeling, verification, calibration, and validation of the high gain antenna stepping mechanism and the reaction wheels, which are the two largest jitter contributors. This paper also describes on-orbit mitigation strategies to protect the system from analysis model uncertainties. Lessons learned from the SDO jitter analyses and test programs are included in the paper to share the knowledge gained with the community.
机译:太阳能动态天文台(SDO)旨在研究太阳对地球的影响,太阳能的源,储存和释放以及太阳的内部结构。在科学观察期间,仪器焦平面上的抖动稳定性必须保持在少于两个SDO仪器的弧形秒的一小部分。为了满足这些严格的要求,已经致力于预测各种干扰源引起的抖动的大量分析和测试努力。本文提出了迄今为止执行的SDO抖动分析方法和测试工作的概述。它强调了高增益天线步进机构和反应轮的干扰建模,验证,校准和验证,这是两个最大的抖动贡献者。本文还介绍了从分析模型不确定性保护系统的轨道缓解策略。从SDO抖动分析和测试计划中汲取的经验教训包含在论文中,以分享与社区获得的知识。

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