1. Mel’nikov, N.N. and Kalashnik, A.I., Sozdanie mnogourovnevoi sistemy geodinamicheskogo geomonitoringa gornotekhnicheskikh i neftegazovykh ob’ektov zapadnoi chasti Rossiiskogo sektora Arktik (Creating a Multilevel System for Geodynamic Geomonitoring of Mining Aad Petroleum Production Sites in the Western Russian Arctic), Arktika: Ekologiya i Ekonomika, 2015, no. 3 (19), pp. 66–75.
2. Bychkov, I.V., Vladimirov, D N., Oparin, V.N., Potapov, V.P., and Shokin, Yu. I., Mining Information Science and Big Data Concept for Integrated Safety Geomonitoring and Subsoil Management, J. Min. Sci., 2016, vol. 52, no. 6, pp. 1195–1204.
3. Hartwig, M. E., Detection of Mine Slope Motions in Brazil as Revealed by Satellite Radar Interferograms, Bulletin of Engineering Geology and the Environment, 2016, vol. 75, no. 2, pp. 605–621.
4. Alabyan, A.M., Zelentsov, V.A., Krylenko, I.N., Potryasaev, S.A., Sokolov, B.V., and Yusupov, R.M., Design of Intelligent Information Systems for Real-Time Prediction of River Floods), Vestn. Ross. Akad. Nauk, 2016, vol. 86, no. 2, pp. 127–137
5. Jiang, H., Lin, P., Fan, Q., and Qiang, M., Real-Time Safety Risk Assessment Based on a Real-Time Location System for Hydropower Construction Sites, The Scientific World Journal, 2014, Article ID 235970, p. 14.