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Hubble Space Telescope Pointing Performance Due to Micro-Dynamic Disturbances from the NICMOS Cryogenic Cooler

机译:由于NICMOS低温冷却器产生的微动力干扰,哈勃太空望远镜的指向性能

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摘要

The Vibration Admittance Test (VET) was performed to measure the emitted disturbances of the Near Infrared Camera and Multi-Object Spectrometer (NICMOS) Cryogenic Cooler (NCC) in preparation for NCC installation onboard the Hubble Space Telescope (HST) during Servicing Mission 3B (SM3B). Details of the VET ground-test are described, including facility characteristics, sensor complement and configuration, NCC suspension, and background noise measurements. Kinematic equations used to compute NCC mass center displacements and accelerations from raw measurements are presented, and dynamic equations of motion for the NCC VET system are developed and verified using modal test data. A MIMO linear frequency-domain analysis method is used to compute NCC-induced loads and HST boresight jitter from VET measurements. These results are verified by a nonlinear time-domain analysis approach using a high-fidelity structural dynamics and pointing control simulation for HST. NCC emitted acceleration levels not exceeding 35 micro-g rms were measured in the VET and analysis methods herein predict 3.1 milli-areseconds rms jitter for HST on-orbit. Because the NCC is predicted to become the predominant disturbance source for HST, VET results indicate that HST will continue to meet the 7 milli-arcsecond pointing stability mission requirement in the post-SM3B era.
机译:进行了振动导纳测试(VET)以测量近红外摄像机和多目标光谱仪(NICMOS)低温冷却器(NCC)的发射干扰,为在维修任务3B期间在哈勃太空望远镜(HST)上安装NCC做准备( SM3B)。描述了VET地面测试的详细信息,包括设施特性,传感器补充和配置,NCC悬挂以及背景噪声测量。提出了用于从原始测量值计算NCC重心位移和加速度的运动方程,并开发了NCC VET系统的运动动力学方程,并使用模态测试数据进行了验证。 MIMO线性频域分析方法用于根据VET测量结果计算NCC引起的载荷和HST视轴抖动。通过使用高保真结构动力学和HST的指向控制仿真的非线性时域分析方法验证了这些结果。在VET中测量了NCC发射的加速度不超过35微克rms,本文的分析方法预测HST在轨时的3.1毫秒均方根抖动。由于预计NCC将成为HST的主要干扰源,因此VET结果表明,HST将在SM3B后时代继续满足7毫秒的指向稳定任务要求。

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