Estimation of Pointing Errors of Large Radio Telescopes under Solar Radiation Based on Digital Twin

Author:

Wei Shanxiang1ORCID,Kong Deqing23,Wang Binlan1,Fu Lianbo4,Xiao Wenrong1,Yin Zongming1ORCID,Li Yongxiang1,Xiao Zhouzhou4

Affiliation:

1. School of Mechanical Engineering, Guizhou University of Engineering Science, Bijie 551700, China

2. Key Laboratory of Lunar and Deep Space Exploration, National Astronomical Observatories, Chinese Academy of Sciences, Beijing 100101, China

3. School of Astronomy and Space Science, University of Chinese Academy of Sciences, Beijing 100049, China

4. School of Physics and Electronics, Henan University, Kaifeng 475004, China

Abstract

The pointing accuracy of large radio telescopes is affected by antenna structure errors, installation errors, servo errors, gravity, and varying environmental factors. Although an on-line pointing model had been developed in the past for several large radio telescopes to correct these effects, it is also valuable to explore new ways to correct these effects. Therefore, in order to estimate the dynamic pointing error of large radio telescopes under solar radiation, a new way based on digital twin (DT) is used in this paper. Digital models of the Wuqing 70-m radio telescope (WRT70) are created based on the DT operational framework. Finally, the reliability of the WRT70’s DT system is verified, and the dynamic pointing error of WRT70 (staying at the position of the elevation angle of 90° and the azimuth angle of 180°) on two sunny days in different seasons is estimated by the created DT system. The research results show that the pointing error of large radio telescopes under solar radiation fluctuates greatly and the seasonal differences are very striking. The maximum elevation pointing error of WRT70 under solar radiation around the winter solstice is over 40 arcsec, which is equal to 4/11 of the beam width for WRT70 operating at 8 GHz. In this paper, it is feasible to estimate the time-varying pointing errors of large radio telescopes at rest under solar radiation by constructing a DT system, but it is not effective to estimate the dynamic pointing errors of large radio telescopes in operation. It is expected to establish a dynamic pointing error model and calibrate the dynamic pointing errors of large radio telescopes in operation by DT technology in the future.

Funder

National Natural Science Foundation of China

Scientific and Technological Innovation Team of Higher Education Institutions under the Education Department of Guizhou of China

Natural Science Research Project of Education Department of Guizhou of China

Bijie City Science and Technology Project

Natural Science Research Project of Guizhou Higher Education Institutions of China

Publisher

MDPI AG

Reference28 articles.

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3. Wang, N. (2019, January 9–15). Introduction for QTT Project. Proceedings of the 2019 URSI Asia-Pacific Radio Science Conference (AP-RASC), New Delhi, India.

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