Graduated from Taras Shevchenko National University of Kyiv, Mechanics and Mathematics department in 1995. She received her DrSc degree in Technical Sciences (2009). At present she is a head of the System Analysis lab at the Institute of Cosmophysical Researches and Radio Wave Propagation of the Far Eastern Branch of Russian Academy of Sciences and professor of Control Systems subdepartment at Kamchatka State Technical University. Her research interests are currently focused on methods of pattern recognition, data mining,
modeling and analysis of geophysical data.
O. V. Mandrikova, “Intelligent methods for natural data analysis: application to space weather”, Computer Optics, 48:1 (2024), 139–148
2022
2.
O. V. Mandrikova, Yu. A. Polozov, “Modeling and analysis of fof2 data using narx neural networks and wavelets”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 41:4 (2022), 137–146
3.
N. V. Fetisova, O. V. Mandrikova, “Modeling and analysis of ionospheric parameters based on generalized multicomponent model”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 41:4 (2022), 89–106
O. V. Mandrikova, Yu. A. Polozov, N. V. Fetisova, “Method for modeling of ionospheric parameters and detection of ionospheric disturbances”, Zh. Vychisl. Mat. Mat. Fiz., 61:7 (2021), 1101–1112; Comput. Math. Math. Phys., 61:7 (2021), 1094–1105
O. V. Mandrikova, A. A. Stepanenko, “Automated method for calculating the Dst-index based on the wavelet model of geomagnetic field variations”, Computer Optics, 44:5 (2020), 797–808
S. Yu. Papsheva, O. V. Mandrikova, S. Yu. Khomutov, “Method of noise detection in magnetic data”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 29:4 (2019), 87–97
7.
A. V. Mochalova, V. A. Mochalov, O. V. Mandrikova, “The analysis of dependence of the values of the Dst-index counted by means of three techniques from the level of solar and geomagnetic activity”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 29:4 (2019), 77–86
2016
8.
O. V. Mandrikova, Yu. A. Polozov, I. S. Solovev, N. V. Fetisova, “The analysis of ionospheric parameters during periods of solar events and geomagnetic storms”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 4(15), 49–55
9.
O. V. Mandrikova, T. L. Zalyaev, I. S. Solovev, S. Yu. Khomutov, “Analysis of geomagnetic field data and cosmic rays variations during periods of increased solar activity”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 3(14), 40–46
10.
O. V. Mandrikova, E. A. Zhizhikina, “A neural network system for estimation of the geomagnetic field disturbance”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 3(14), 34–39
11.
S. E. Smirnov, V. V. Bychkov, O. V. Mandrikova, I. S. Solovev, Yu. A. Polozov, T. L. Zalyaev, S. Y. Khomutov, D. G. Baishev, I. N. Poddelsky, Z. F. Dumbrava, “Analysis of space weather events in 2014 according to the observations in the north-eastern region of Russia”, Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 1(12), 66–84; Bulletin KRASEC. Phys. & Math. Sci., 12:1 (2016), 58–74
2015
12.
O. V. Mandrikova, E. A. Zhizhikina, “An automatic method for estimating the geomagnetic field”, Computer Optics, 39:3 (2015), 420–428