首页> 外文会议>The F.Landis Markley Astronautics Symposium >THREE AXIS CONTROL OF THE HUBBLE SPACE TELESCOPE USING TWO REACTION WHEELS AND MAGNETIC TORQUER BARS FOR SCIENCE OBSERVATIONS
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THREE AXIS CONTROL OF THE HUBBLE SPACE TELESCOPE USING TWO REACTION WHEELS AND MAGNETIC TORQUER BARS FOR SCIENCE OBSERVATIONS

机译:利用两个反应轮和磁扭力杆对三倍空间的望远镜进行三轴控制,用于科学观测

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The Hubble Space Telescope (HST) is renowned for its superb pointing accuracy of less than 10 milli-arcseconds absolute pointing error. To accomplish this, the HST relies on its complement of four reaction wheel assemblies (RWAs) for attitude control and four magnetic torquer bars (MTBs) for momentum management. As with most satellites with reaction wheel control, the fourth RWA provides for fault tolerance to maintain three-axis pointing capability should a failure occur and a wheel is lost from operations. If an additional failure is encountered, the ability to maintain three-axis pointing is jeopardized. In order to prepare for this potential situation, HST Pointing Control Subsystem (PCS) Team developed a Two Reaction Wheel Science (TRS) control mode. This mode utilizes two RWAs and four magnetic torquer bars to achieve three-axis stabilization and pointing accuracy necessary for a continued science observing program. This paper presents the design of the TRS mode and operational considerations necessary to protect the spacecraft while allowing for a substantial science program.
机译:哈勃太空望远镜(HST)以其卓越的指向精度(绝对指向误差小于10毫秒)而著称。为此,HST依靠四个反作用轮组件(RWA)进行姿态控制,以及四个电磁扭矩杆(MTB)进行动量管理来补充。与大多数带有反作用轮控制的卫星一样,第四个RWA提供了容错功能,以在发生故障并且由于操作造成飞轮丢失时保持三轴指向能力。如果遇到其他故障,则维护三轴指向的能力将受到损害。为了为这种潜在情况做好准备,HST指向控制子系统(PCS)团队开发了一种“两轮反应科学”(TRS)控制模式。该模式利用两个RWA和四个磁性转矩杆来实现连续的科学观测程序所必需的三轴稳定性和指向精度。本文介绍了TRS模式的设计以及在允许进行大量科学计划的同时保护航天器所必需的操作注意事项。

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