Opto-Electronic Engineering, Volume. 51, Issue 2, 230211(2024)
Decoupling study and noise analysis of multi-degree-of-freedom deformation measurement method for space gravitational wave detection telescope
[6] Wang X Y, Bai S J, Zhang Q et al. Research progress of telescopes for space-based gravitational wave missions[J]. Opto-Electron Eng, 50, 230219.(2023).
[7] Sanjuán J., Preston A., Korytov D. et al. Carbon fiber reinforced polymer dimensional stability investigations for use on the laser interferometer space antenna mission telescope[J]. Rev Sci Instrum, 82, 124501(2011).
[9] Fan W T, Zhao H C, Fan L et al. Preliminary analysis of space gravitational wave detection telescope system technology[J]. Acta Sci Nat Univ Sunyatseni, 60, 178-185.(2021).
[16] Li B H, Luo J, Qiu M Y et al. Design technology of the truss support structure of the ultra-low thermal deformation gravitational wave detection telescope[J]. Opto-Electron Eng, 50, 230155.(2023).
[17] Yu X Z. Multi-degree of freedom optical metrology techniques[D](2017).
[19] Yan H. Study on ultra-precision multi-degree-of-freedom optical measurement base on laser interferometry[D](2019).
[20] Yu J P. Study on planar capacitive sensors for multiple-dimensional precision displacement measurement[D](2013).
[21] Sun C. Research on multi-degree-of-freedom measurement method for precision engineering[D](2021).
[22] Zhao K, Fan W T, Hai H W et al. Design of optical path stability measurement scheme and theoretical analysis of noise in telescope[J]. Opto-Electron Eng, 50, 230158.(2023).
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Jian Luo, Jie Song, Sijun Fang, Fanle Kong, Yong Yan. Decoupling study and noise analysis of multi-degree-of-freedom deformation measurement method for space gravitational wave detection telescope[J]. Opto-Electronic Engineering, 2024, 51(2): 230211
Category: Article
Received: Aug. 30, 2023
Accepted: Feb. 7, 2024
Published Online: Apr. 26, 2024
The Author Email: Yong Yan (闫勇)