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LI Lin, GONG Xiaoxue, ZHU Feihu, YU Yang, ZHAO Qin, ZHANG Lei, ZHANG Yunfang, WU Yanpeng, WANG Li. Simulation and Experiment on the Influence of Micro Vibration on Pointing Measurement of High-Performance Spacecraft[J]. Journal of Deep Space Exploration, 2023, 10(3): 277-282. DOI: 10.15982/j.issn.2096-9287.2023.20220056
Citation: LI Lin, GONG Xiaoxue, ZHU Feihu, YU Yang, ZHAO Qin, ZHANG Lei, ZHANG Yunfang, WU Yanpeng, WANG Li. Simulation and Experiment on the Influence of Micro Vibration on Pointing Measurement of High-Performance Spacecraft[J]. Journal of Deep Space Exploration, 2023, 10(3): 277-282. DOI: 10.15982/j.issn.2096-9287.2023.20220056

Simulation and Experiment on the Influence of Micro Vibration on Pointing Measurement of High-Performance Spacecraft

  • The micro-vibration of ultra-high-static and ultra-high-stable spacecraft was studied. A modeling and simulation method was proposed to introduce the pointing measurement error and additional torque error induced by micro-vibration into the pointing measurement control system. The micro-vibration experiment of the pointing measurement system was carried out based on the quasi-zero stiffness suspension method. The simulation and experimental results show that the pointing measurement error induced by micro-vibration was more significant, and the peak value reached 10e-4°, and the pointing measurement error of the pointing control system caused by micro-vibration was 0.03 pixels. This work can be used for reference in the study of ultra-high-static and ultra-high-stable spacecraft and derivative technologies.
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