Open Access
Issue
E3S Web Conf.
Volume 280, 2021
Second International Conference on Sustainable Futures: Environmental, Technological, Social and Economic Matters (ICSF 2021)
Article Number 05012
Number of page(s) 6
Section Sustainable Energy
DOI https://doi.org/10.1051/e3sconf/202128005012
Published online 30 June 2021
  1. S.P. Denisyuk, Energoefektivnist Ukrayini: problemi ta shlyahi yiyi zrostannya [Energy-efficiency of Ukraine: problems and ways of development]. Energetika: ekonomIka, tehnologiyi, ekologiya 4 (50), 7–28 (2017). [Google Scholar]
  2. Denisyuk, S.P., Kotsar, O.V., & Chernetska, Yu.V. (2016). Energetichna efektivnist Ukrayini. Kraschi proektni ideyi Proekt «Profesionalizatsiya ta stabilizatsiya energetichnogo menedzhmentu v Ukrayini [Energy efficiency in Ukraine. The best project ideas. The project Professionalization and stabilization of energy management in Ukraine]. Kyiv: KPI im. Sikorskoho (in Ukrainian). [Google Scholar]
  3. Sinchuk O.N., Sinchuk I.O., Huzov, E.S., et al (2016). Elektroeffektivnost proizvodstv s podzemnyimi sposobami dobyichi. Monografiya [Energy-efficiency of underground mining enterprises]. Riga: LAP LAMBERT Academic Publishing (in Russian). [Google Scholar]
  4. Sinchuk, I. O., Karamanyts, F. I., Osadchuk, Yu. G., et al (2019). Electric engineering of iron ore underground enterprises. Current status and prospects. Multi-authored monograph. Edited by DSc., Prof. O.M. Sinchuk. Warsaw: iScience Sp. z o. o. [Google Scholar]
  5. Sinchuk, I. (2018). Harmonization of modeling systems for assessing the electric-power consumption levels at mining enterprises, Mining of Mineral Deposits, vol. 12, no. 4, pp. 100–107. doi:10.15407/mining12.04.100. [Google Scholar]
  6. Sinchuk, I. O., Boiko, S. M., M. L. Baranovska, et al (2019). Brief commentaries on the problem of power consumption management at iron ore underground mines. Multi-authored monograph. Edited by DSc., Prof. O.M. Sinchuk. Warsaw: iScience Sp. z o. o. [Google Scholar]
  7. Sinchuk, O., Kupin, A., Sinchuk, I., Rohoza, M., Plieshkov, P. (2020). Certain aspects concerning the development of a functioning scheme of the auto-mated system to control energy flows of underground iron-ore enterprises, Mining of Mineral Deposits, vol. 14, no. 3, pp. 101–111, 2020. doi:10.33271/mining14.03.101. [Google Scholar]
  8. Sinchuk, I.O. (2019). MetodologIchnI zasadi otsInyuvannya elektroefektivnostI zalIzorudnih pIdpriEmstv [Methodological foundations of energy-efficiency of iron ore mining enterprises]. Kremenchuk: PP Shcherbatykh (in Ukrainian). [Google Scholar]
  9. Razumnyiy, Yu.T. (2004). Problemyi ispolzovaniya vodootlivnyih ustanovok ugolnyih shaht v kachestve potrebiteley-regulyatorov [Problems of applying pump stations of coal mines as consumers-regulators]. Hirnycha sprava – Mining, 73, pp. (in Russian). [Google Scholar]
  10. Rukhlova, N.Yu. (2014). Modelirovanie energoeffektivnyih rezhimov rabotyi shahtnogo vodootliva [Simulation of energy-efficient pumping modes for underground mines]. Proceeding from the International conference “Forum girnikiv – 2014”, October 1-4, 2014, pp. 160–163. Dnepropetrovsk: TOV LIzunovPres (in Russian). [Google Scholar]
  11. Kholomenyuk, M.V. (2007). Metodika rozrahunkIv vodovidlivnih ustanovok girnichih pIdpriemstv: metodichni vkazivki dlya studentiv napryamu pшIdgotovki 0902 Inzhenerna mehanIka [Methods of calculations for pump stations of mining enterprises: methodological guidelines for mechanical engineering students], Dnipro: Natsionalniy girnichiy universitet (in Ukrainian). [Google Scholar]
  12. Ruhlova, N.Yu. (2012). O probleme effektivnogo elektropotrebleniya glavnyim vodootlivom shahtyi [On the problem of energy efficiency of major pump stations at underground mines]. Girnicha elektromehanIka ta avtomatika – Mining electromechanics and automation, 89, pp. 143–145 (in Russian). [Google Scholar]
  13. Kopnova, E. D., & Rodionova, L.A. (2016). Statisticheskie podhodyi k analizu i prognozirovaniyu demograficheskih dannyih [Statistical approaches to analyzing and forecasting demographic data]. Izvestiya Sarat. un-ta – Proceedings from Saratov University,16, pp. 306–315 (in Russian). [Google Scholar]
  14. Lokhman, N. Serebrenikov, V. Beridze, T. Cherep, A. & Dashko, I. (2020). Analysis of economic and mathematical modeling of industrial enterprise functioning at multicollinearity based on parameterization. Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu – Scientific Journal of National Mining University, 2, pp. 179–189. [Google Scholar]
  15. SMIDA, Account of information services. Reports of enterprises. http://smida.gov.ua/ (n.d.) [Google Scholar]
  16. State Statistics Service of Ukraine (n.d.). http://www.ukrstat.gov.ua/ [Google Scholar]
  17. T.M. Beridze, V.M. Serebrenykov, N.V. Lokhman, Monitoring of production activity of enterprises of Kryvyi Rih region. Ekonomika ta suspilstvo 15 . Retrieved from (2018) [Google Scholar]
  18. V. Prokhorova, V. Protsenko, Y. Bezuglaya, Us, J. The optimization algorithm for the directions of influence of risk factors on the system that manages the potential of machine building enterprises. Eastern-European Journal of Enterprise Technologies 4 (1-94), 6–13 (2018) [Google Scholar]
  19. K. Karlsberg, Regressionnyiy analiz v Microsoft Excel (Regression analysis in Microsoft Excel). (Williams, Moscow, 2017) [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.