Paper
13 October 2008 Dynamic evaluation on friction torque of bearing for space use
Shichao Chen, Xintao Xia, Zhongyu Wang, Changxing Wang
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Abstract
As the important index of evaluating the operational sensitivity of the rolling bearings, the friction torque of bearing for space using influences the signal transferring accuracy and the system stability of the spacecraft directly. It is difficult to do the large number of tests based on the particularity of the bearing for space using. Therefore, considering the limitation of the statistical principle, a dynamic evaluation model called the grey bootstrap modeling (GBM) is proposed in the paper to dynamically evaluate the friction torque of bearing for space using. The test shows under the condition of the minimum of the mean uncertainty, choosing the suitable rolling factor, the number of resampling and the confidence level, the GBM can describe the fluctuation interval of the friction torque on-line much better, and also can separate the systematic error. So, the GBM has the better performance of dynamic forecasting and its liability is quite high.
© (2008) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Shichao Chen, Xintao Xia, Zhongyu Wang, and Changxing Wang "Dynamic evaluation on friction torque of bearing for space use", Proc. SPIE 7129, Seventh International Symposium on Instrumentation and Control Technology: Optoelectronic Technology and Instruments, Control Theory and Automation, and Space Exploration, 712926 (13 October 2008); https://doi.org/10.1117/12.807453
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KEYWORDS
Space operations

Statistical analysis

Aerospace engineering

Data modeling

Statistical modeling

Ytterbium

Data fusion

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