• Infrared and Laser Engineering
  • Vol. 51, Issue 5, 20210881 (2022)
Xin He1、2、3, Xiang Jiang1、2, Bozhong Gu1、2, Yu Ye1、2, and Zhongyu Yue1、2
Author Affiliations
  • 1National Astronomical Observatories/Nanjing Institute of Astronomical Optics & Technology, Chinese Academy of Sciences, Nanjing 210042, China
  • 2CAS Key Laboratory of Astronomical Optics & Technology, Nanjing Institute of Astronomical Optics & Technology, Nanjing 210042, China
  • 3University of Chinese Academy of Sciences, Beijing 100049, China
  • show less
    DOI: 10.3788/IRLA20210881 Cite this Article
    Xin He, Xiang Jiang, Bozhong Gu, Yu Ye, Zhongyu Yue. Design and analysis of Lijiang 2.4-meter telescope Nasmyth focus and Cassgrain focus switching system[J]. Infrared and Laser Engineering, 2022, 51(5): 20210881 Copy Citation Text show less
    References

    [1] Li Mingxuan. Study design of 4 m telescope tertiary mirr[D]. Changchun: University of Chinese Academy of Sciences (Changchun Institute of Optics, Fine Mechanics Physics, Chinese Academy of Sciences), 2015. (in Chinese)

    [2] Fang C, Gu B Z, Yuan X Y, et al. 2.5 m widefield highresolution telescope [J]. Sci SinPhys Mech Astron, 2019, 49(5): 2034. (in Chinese)

    [3] Z Cai, C Zhang, F Fan. History and prospect of astronomical telescopes: Introducing Tsinghua multiplexed survey telescope (MUST). Experimental Technology and Management, 38, 1-9, 37(2021).

    [4] Hu Qiqian. Telescope Technique Astronomy Observation [M]. Nanjing: Southeast University Press, 2014. (in Chinese)

    [5] Warner M, Heathcote S, Schumacher G, et al. Upgrading the controller of the fast tiptilt tertiary mirr f the SOAR telescope [C]Proceedings of SPIE, 2010.

    [6] Linxie Chen, Chuanjun Wang, Yufeng Fan, et al. Design and development of the control system for multi-band photometry system of Lijiang 2.4-meter telescope. Astronomical Research and Technology, 15, 441-447(2018).

    [7] Fei Yang, Fuguo Wang, Baogang Chen, et al. Status and development of tertiary mirror technology in large aperture telescope. Laser & Optoelectronics Progress, 50, 050005(2013).

    [8] Yongchao Ding, Deen Wang, Baoli Lun, et al. Realization of high tracking precision using a tip-tilt mirror for the 2.4-meter telescope-Part I: Prototype design and test. Laser & Optoelectronics Progress, 55, 071104(2018).

    [9] Guomin Wang. Review of drive style for astronomical optical telescope. Progress in Astronomy, 364-374(2007).

    [10] Shuyan Xu. Shafting design for precise two-dimensional turntable applied to φ300 mm plane mirror. Optics and Precision Engineering, 28, 1075-1082(2020).

    [11] Bowen Shan, Hongwei Xin, Changzheng Chen. Design and analysis for mechanism of space solar telescope. Chinese Journal of Scientific Instrument, 42, 1-8(2021).

    [12] Jingwei Sun, Xiaoxia Wu, Tianyu Lv, et al. Design and analysis of the 400 mm tracing telescope structure. Infrared and Laser Engineering, 43, 2568-2575(2014).

    [13] Xiang Li, Dongwei Bai, Lixin Meng, et al. Optical telescope of space debris detection and ranging compound system. Infrared and Laser Engineering, 50, 20200464(2021).

    [14] Dehua Yang, Bozhong Gu, Xiangqun Cui. Stiffness calculation and application of self-aligning ball bearing. Mechanical Science and Technology, 114-117(2003).

    [15] Zhuo Chen, Qinglong Hu, Zhaohui Li. Structural optimization of 2-D tracking turntable with carbon fiber framework for spatial target detection. Optics and Precision Engineering, 29, 547-557(2021).

    [16] Olivier Pirnay, Vincent Meau, Gregy Lousberg. OAJ: 2.6 m wide field survey telescope [C]SPIE Astronomical Telescopes + Instrumentation, 2012.

    Xin He, Xiang Jiang, Bozhong Gu, Yu Ye, Zhongyu Yue. Design and analysis of Lijiang 2.4-meter telescope Nasmyth focus and Cassgrain focus switching system[J]. Infrared and Laser Engineering, 2022, 51(5): 20210881
    Download Citation