Coordinate support system of the automated control system of the antenna feed type 3 on RATAN-600: results of applying the coordinate search algorithm
Main Article Content
Abstract
In 2019, a new automatic control system (ACS) of the antenna feed type 3 was put into experimental and then into regular operation on the RATAN-600 radio telescope, which provided new opportunities for controlling the motion parameters of the antenna feed elements and, in general, allowed starting a series of methodological work on the implementation of a new observation mode with tracking of objects. To improve the quality of the tracking mode and implement the new automated observation modes, it is necessary to integrate a coordinate support system into the ACS of the antenna feed. The paper investigates approaches to solving the problem of automated coordinate support for the operation of the antenna feed type 3 on the RATAN-600 radio telescope.
Downloads
Article Details

This work is licensed under a Creative Commons Attribution 4.0 International License.
References
Atali G., Garip Z., Ozkan S.S., Karayel D., 2018. Academic Perspective Procedia, vol. 1, pp. 31–38.
Berka Karel, 1983. Measurement: Its Concepts, Theories and Problems. D. Reidel Publishing Company, Dordrecht, Holland, doi:10.1007/978-94-009-7828-7.
Bradski G., 2000. The OpenCV Library. Dr. Dobb’s Journal of Software Tools, vol. 120, pp. 122–125.
Brinkmann R., 1999. The Art and Science of Digital Compositing, 1st Ed. Morgan Kaufmann-Academic Press, p. 184.
Ershov E.I., 2018. Fast Hough Transform as a tool for analyzing two-dimensional and three-dimensional images in tasks of searching for lines and linear clustering, PhD thesis. Moscow. (In Russ.)
Hough P.V.C., 1962. Method and Means for Recognizing Complex Patterns, U.S. Patent 30696541962.
Karrach L., Pivarciova E., Bozek P., 2020. J. Imaging, vol. 6, p. 67.
Maksimova M.V., 2013. Inzhenernye izyskaniya, vol. 2, pp. 18–21. (In Russ.)
Nikolaev D.P., 2023. Methods and algorithms of Hough analysis of images in technical vision systems, PhD thesis. Moscow. (In Russ.)
Penate-Sanchez A., Andrade-Cetto J., Moreno-Noguer F., 2013. IEEE Transactions on Pattern Analysis and Machine Intelligence, vol. 35, no. 10, pp. 2387–2400.
Rossum G., Drake F.L., Jr., 2001. Python Reference Manual. M: Williams. (In Russ.)
Savinykh V.P., 2015. Perspektivy nauki i obrazovaniya, vol. 2, pp. 51–59. (In Russ.)
Storozhenko A.A., Bogod V.M., Lebedev M.K., et al., 2021. XXV All-Russian Annual Conference “Solar and SolarTerrestrial Physics–2021”. Saint Petersburg, p. 249. (In Russ.)
Teoh M.K., Teo K.T.K., Yoong H.P., 2022. Computation, vol. 10, iss. 9, p. 147.
Vinogradov I.M., 1977. In Vinogradov I.M. et al. (Eds.), Encyclopedia of Mathematics. Moscow: Sovetskaya Entsiklopediya, vol. 1. (In Russ.)
Zhang H., Zhang C., Yang W., Chen C.-Y., Member I., 2015. IEEE International Conference on Robotics and Biomimetics (ROBIO), Zhuhai, China, pp. 2501–2506.
Zhong X., Zhou Y., Liu H., 2017. Int. J. Adv. Robot. Syst. vol. 14.