Intelligent automation of road pavement compaction processes using satellite navigation and sensor technologies
How to cite
Abstract
Keywords
References
Altyntsev M.A. Study of the results of processing data obtained by various models of terrestrial laser scanners for quality control of road repair. Siberian State University of Geosystems and Technologies Bulletin. 2022, vol. 27, no. 2, pp. 5-17.
Bashirova D.R., Bryn M.Ya., Krivonosov D.A. Forecasting settlements of road foundations on high embankments based on machine learning using geodetic measurement data. Siberian State University of Geosystems and Technologies Bulletin. 2022, vol. 27, no. 5, pp. 19-29.
Dumenko V.A., Korochkin A.V., Konorev A.S., Eremenko E.A. Validation of elastic moduli of layers of a multilayer pavement model using pressure sensors in granular base layers. Roads and Bridges. 2024, no. 52/2, pp. 213-230.
Kolesnikov A.A., Kosarev N.S., Reznik A.V., Nemova N.A. Automated remote monitoring of technogenically modified territories using machine learning methods. Geodesy and Cartography. 2025, no. 12, pp. 29-37.
Konkin A.V., Mazyrin T.A., Boykov N.V. Problems of providing a unified coordinate data environment in geoinformation systems at the stage of road operation. Roads and Bridges. 2025, no. 54/2, pp. 237-250.
Krayushkin A.S., Tyuremnov I.S., Shorokhov D.A. Experimental studies of soil compaction by a combined vibratory roller DM-58 under field conditions. Bryansk State University Scientific and Technical Bulletin. 2025, vol. 11, no. 2, pp. 154-166.
Manzhilevskaya S.E. Labour productivity control at a construction site using machine learning algorithms. Moscow State University of Civil Engineering Bulletin. Monthly Journal on Construction and Architecture. 2026, vol. 21, no. 5, pp. 821-832.
Mironyuk V.P., Annenkov A.V. Analysis of technologies providing positioning of highly automated vehicles. Roads and Bridges. 2024, no. 52/2, pp. 233-261.
Prokopev A.P., Nabizhanov Zh.I., Ivanchura V.I., Emelyanov R.T. On the development of a continuous compaction control system for road materials for asphalt pavers. Software Engineering. 2021, vol. 12, no. 8, pp. 413-419.
Savelev S.V., Poteryaev I.K., Buryy G.G. Modelling the interaction of a vibrating drum with deformable soil during compaction of road technological layers. Russian Automobile and Highway Industry Journal. 2025, vol. 22, no. 4, pp. 524-539.
Sukharev R.Yu., Belyaev K.V., Lazuta I.V. Calculation of the turning trajectory of an unmanned machine with front steered wheels. Bryansk State University Scientific and Technical Bulletin. 2025, vol. 11, no. 2, pp. 197-206.
Tulebekova A.S., Zhusupbekov A.Zh., Zhankina A.K., Bakirova D.G., Ilyubaeva A. Design and construction of roads in complex soil conditions: practical recommendations. Construction: Science and Education. 2025, vol. 15, no. 1, pp. 131-140.
Tyuremnov I.S., Ivanov S.N., Krayushkin A.S. Results of experimental studies of vibration accelerations of the drum of a DM-617 roller using digital signal processing technology. Russian Automobile and Highway Industry Journal. 2020, vol. 17, no. 2, pp. 182-195.
Tyuremnov I.S. Features of interaction modes between the drum of a vibratory roller and the soil surface. Russian Automobile and Highway Industry Journal. 2026, vol. 23, no. 1, pp. 40-60.
Shishkin E.A., Ivanchenko S.N., Sidorkov V.V., Mamaev L.A., Smolyakov A.A. Study of the relationship between design and technological parameters of vibratory and oscillatory rollers. Bryansk State University Scientific and Technical Bulletin. 2021, vol. 7, no. 2, pp. 184-189.