References
- Artese, S. and Perrelli, M. (2018). Monitoring a landslide with high accuracy by total station: A DTM-Based model to correct for the atmospheric effects. Geosciences, 8(2):46, doi:10.3390/geosciences8020046.
- Baykal, O., Tari, E., Coşkun, M. Z., and Erden, T. (2005). Accuracy of point layout with polar coordinates. Journal of Surveying Engineering, 131(3):87–93, doi:10.1061/(asce)0733-9453(2005)131:3(87).
- Bęcek, K., Gawronek, P., Klapa, P., Kwoczyńska, B., Matuła, P., Michałowska, K., Mikrut, S., Mitka, B., Piech, I., and Makuch, M. (2015). Modelowanie i wizualizacja danych 3D na podstawie pomiarów fotogrametrycznych i skaningu laserowego (3D data modeling and visualization based on photogrammetric measurements and laser scanning). Wyższa Szkoła Inżynieryjno-Ekonomiczna.
- Bednarski, L., Sienko, R., Grygierek, M., and Howiacki, T. (2021). New distributed fibre optic 3DSensor with thermal self-compensation system: Design, research and field proof application inside geotechnical structure. Sensors, 21(15):5089, doi:10.3390/s21155089.
- Bell, F. G. and Donnelly, L. J. (2006). Mining and its impact on the environment.
- Boginska, L., Hasii, O., Yurchenko, O., and Shushkevych, V. (2020). Environmental and economic aspects of the exploitation of roads by the mining industry. E3S Web of Conferences, 168:00022, doi:10.1051/e3sconf/202016800022.
- Bzówka, J., Grygierek, M., and Rokitowski, P. (2021). Experimental investigation using distributed optical fiber sensor measurements in unbound granular layers. Engineering Structures, 231:111767, doi:10.1016/j.engstruct.2020.111767.
- Dreier, A., Kuhlmann, H., and Klingbeil, L. (2022). The potential of UAV-based laser scanning for deformation monitoring – Case study on a water dam. In Proceedings of the 5th Joint International Symposium on Deformation Monitoring – JISDM 2022, JISDM2022. Editorial de la Universitat Politècnica de València, doi:10.4995/jisdm2022.2022.13833.
- Grygierek, M. (2017). Change in stiffness of pavement layers in the linear discontinuous deformation area. IOP Conference Series: Materials Science and Engineering, 245:042051, doi:10.1088/1757-899x/245/4/042051.
- Grygierek, M. and J. Sternik, K. (2020). Identification of pavement model parameters in the area of discontinuous surface deformation based on FWD tests. International Journal of Civil Engineering, 19(3):265–282, doi:10.1007/s40999-020-00563-y.
- Grygierek, M. and Kalisz, P. (2018). Influence of mining operations on road pavement and sewer system – selected case studies. Journal of Sustainable Mining, 17(2):56–67, doi:10.1016/j.jsm.2018.04.001.
- Hayakawa, Y. S., Kusumoto, S., and Matta, N. (2016). Application of terrestrial laser scanning for detection of ground surface deformation in small mud volcano (Murono, Japan). Earth, Planets and Space, 68(1), doi:10.1186/s40623-016-0495-0.
- Hedel, R., Boustras, G., Gkotsis, I., Vasiliadou, I., and Rathke, P. (2018). Assessment of the European Programme for Critical Infrastructure Protection in the surface transport sector. International Journal of Critical Infrastructures, 14(4):311, doi:10.1504/ijcis.2018.095616.
- Judycki, J., Jaskuła, P., Pszczoła, M., Ryś, D., Jaczewski, M., Alenowicz, J., Dołżycki, B., and Stienss, M. (2017). New Polish catalogue of typical flexible and semi-rigid pavements. MATEC Web of Conferences, 122:04002, doi:10.1051/matecconf/201712204002.
- Karsznia, K. (2017). The assessment of modern photogrammetric surveying methods in road works applications. In 17th International Multidisciplinary Scientific GeoConference SGEM2017, Informatics, Geoinformatics and Remote Sensing, SGEM2017. Stef92 Technology, doi:10.5593/sgem2017/23/s10.033.
- Kratzsch, H. and Fleming, R. F. S. (2007). Mining subsidence engineering. Springer-Verlag.
- Kulupa, M., Magda, P., and Mrówczyńska, M. (2021). Accuracy characteristics of the selected diagnostics methods and the adjustment of geodetic observations. Civil and Environmental Engineering Reports, 31(4):167–183, doi:10.2478/ceer-2021-0055.
- Kwiatek, J. (2007). Obiekty budowlane na terenach górniczych (Buildings in mining areas). Główny Instytut Górnictwa.
- Lay, U. S., Pradhan, B., Yusoff, Z. B. M., Abdallah, A. F. B., Aryal, J., and Park, H.-J. (2019). Data mining and statistical approaches in debris-flow susceptibility modelling using airborne lidar data. Sensors, 19(16):3451, doi:10.3390/s19163451.
- Monserrat, O. and Crosetto, M. (2008). Deformation measurement using terrestrial laser scanning data and least squares 3D surface matching. ISPRS Journal of Photogrammetry and Remote Sensing, 63(1):142–154, doi:10.1016/j.isprsjprs.2007.07.008.
- Muszyński, Z. and Rybak, J. (2017). Evaluation of terrestrial laser scanner accuracy in the control of hydrotechnical structures. Studia Geotechnica et Mechanica, 39(4):45–57, doi:10.1515/sgem-2017-0036.
- Nam, B. X., Van Anh, T., Bui, L. K., Long, N. Q., Le Thu Ha, T., and Goyal, R. (2020). Mining-Induced Land Subsidence Detection by Persistent Scatterer InSAR and Sentinel-1: Application to Phugiao Quarries, Vietnam, pages 18–38. Springer International Publishing, doi:10.1007/978-3-030-60269-7_2.
- Pavement Condition Diagnostics (2019). Pavement Condition Diagnostics (DSN), guide and reports. https://www.archiwum.gddkia.gov.pl/pl/2982/Diagnostyka-Stanu-Nawierzchni.
- Regulation (2022). Regulation of the Minister of Infrastructure of 24 June 2022 on Technical and Construction Regulations for Public Roads. Act. Journal of Laws, No. 2022, Item 1518, Poland.
- Ren, H., Zhao, Y., Xiao, W., and Hu, Z. (2019). A review of UAV monitoring in mining areas: current status and future perspectives. International Journal of Coal Science & Technology, 6(3):320–333, doi:10.1007/s40789-019-00264-5.
- Vrublova, D., Kapica, R., Gibesova, B., Mudruňka, J., and Struś, A. (2016). Application of GNSS technology in surface mining. Geodesy and cartography, 42(4):122–128, doi:10.3846/20296991.2016.1268433.
- Wróblewska, M. and Grygierek, M. (2022). Assessment of visual representation methods of linear discontinuous deformation zones in the right-of-way. Applied Sciences, 12(5):2538, doi:10.3390/app12052538.
