The measurement and modeling of gravitational deformation for large radio telescope based on wavefront perturbation method

被引:0
作者
Jinqing Wang
Zheng Lou
Yongbin Jiang
Zhengxiong Sun
Linfeng Yu
Weiye Zhong
Yongchen Jiang
Rongbin Zhao
Li Fu
Qian Ye
Shengcai Shi
Qinghui Liu
Yingxi Zuo
机构
[1] Shanghai Astronomical Observatory,
[2] Chinese Academy of Sciences,undefined
[3] Purple Mountain Observatory,undefined
[4] Chinese Academy of Sciences,undefined
来源
Experimental Astronomy | 2023年 / 56卷
关键词
Wavefront perturbation; Surface error; Gravitational deformation; Active surface; Zernike functions;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, the wavefront perturbation method based on power detection of radio sources is used to measure the surface error of the Tianma radio telescope. By measuring the surface errors at different elevation angles, a surface compensation model to correct gravitational deformation is established. Observation results shows that the efficiency reduction caused by the gravitational deformation can be effectively compensated by loading this model on the active surface, especially at high and low elevations. A dual-beam calibration scheme is further used to remove atmospheric background fluctuations, which significantly improves data quality at lower elevations. The form and order of the perturbation modes and data processing are optimized to improve measurement accuracy. This paper presents the first attempt to apply the wavefront perturbation method to large radio telescopes and demonstrates its capacity and effectiveness in telescope runtime surface measurement and maintenance.
引用
收藏
页码:779 / 792
页数:13
相关论文
共 16 条
  • [1] Dong J(2018)Correcting Gravitational Deformation at the Tianma Radio Telescope IEEE Trans. Antennas Propag. 6 2044-2048
  • [2] Wang JQ(2014)Sub-reflector model depending on elevations and performance evaluation for TM65 m radio telescope Sci. Sin. Phys. Mech. Astron. 44 1232-1240
  • [3] Rochblatt DJ(1991)Effects of measurement errors on microwave antenna holography IEEE Trans. Anten. Propag. 39 933-942
  • [4] Rahmat-Samii Y(1984)Surface diagnosis of large reflector antennas using microwave holographic metrology: An iterative approach Radio Sci. 19 1205-1217
  • [5] Rahmat-Samii Y(2007)Near-field radio holography of large reflector antennas IEEE Anten. Propag. Mag. 49 24-41
  • [6] Baars JWM(2007)Measurement of Antenna Surfaces from In-and Out-of-Focus Beam Maps using Astronomical Sources Astron. Astrophys. 465 679-683
  • [7] Lucas R(1985)Phase retrieval in the radio holography of reflector antennas and radio telescopes IEEE Trans. Antennas Propag. 33 749-755
  • [8] Mangum JG(2007)Out-Of-Focus Holography at the Green Bank Telescope Astron. Astrophys. 465 685-693
  • [9] Nikolic B(1966)Antenna tolerance theory–a review Proc. IEEE 5 633-640
  • [10] Hills RE(undefined)undefined undefined undefined undefined-undefined