65d5be51514cb.pdf
DOI:
Mavjud emas
Belyaev V.P., Fedorov A.S. Laser systems SKP and SAUL. Moscow, Electronic Industry, 1981, no. 5-6.
Vasyutinsky I.Yu., Ryazantsev G.E., Yambaev Kh.K. Geodetic devices for construction and installation works. Moscow, Nedra, 1982.
Valieva A.R. Justification of the use of laser scanning in the assessment of deformations of highrise structures. Proceedings of universities. Geodes and aerial photographs, 2016, no. 14, pp. 60-63. ISSN 0536-101X.
Azerov B.F. Modern methods of geodetic observation of deformations of engineering structures. Polzunovsky Bulletin, 2011, no. 1, pp. 19-29. ISSN 2072-892.
Zatsarinny A.V. Automation of high-precision engineering and geodetic measurements. Moscow, Nedra, 1976, pp. 103-175.
Katys G.P. Optical-electronic information processing. Moscow, Mechanical Engineering, 1973, 320 p.
Geodetic methods for studying deformations of structures. Moscow, Nedra, 1991, 270 p.
Zakhidov N.M. Photoelectric device for measuring linear dimensions. SU No. 1474466. 1989, MKI BI No. 15 G01B21 / 00.
Zakhidov N.M., Samborskiy A.A. Saitov E.B., Boltaev A.A. Photoelectric recorder for measuring deviations with a fiber-optic node. N.T. Air Conditioning, Electricity Generation, Distribution Transmission and Utilization Issue, Tashkent 2020, p. 33.
Applied optics. Ed. N.M. Zakaznova. Moscow, Mechanical Engineering, 1988, pp. 28-132.
Yambaev Kh.K. Special works for engineering and geodetic works. Moscow, Nedra, 1990, pp. 223-227.
Yambaev Kh.K., Golygin N.Kh. Geodetic Instrumentation. Moscow, Yukis, 2005, 305 p.
Eliseev S.V. Geodetic instruments and devices. Moscow, Nedra, 1973, pp. 73-75.