Efficiency analysis of low electric power drives employing induction and synchronous reluctance motors in pump applications V Kazakbaev, V Prakht, V Dmitrievskii, MN Ibrahim, S Oshurbekov, ... Energies 12 (6), 1144, 2019 | 51 | 2019 |
Energy efficiency analysis of fixed-speed pump drives with various types of motors V Goman, S Oshurbekov, V Kazakbaev, V Prakht, V Dmitrievskii Applied Sciences 9 (24), 5295, 2019 | 46 | 2019 |
Energy consumption comparison of a single variable-speed pump and a system of two pumps: Variable-speed and fixed-speed S Oshurbekov, V Kazakbaev, V Prakht, V Dmitrievskii, L Gevorkov Applied Sciences 10 (24), 8820, 2020 | 33 | 2020 |
IE5 energy-efficiency class synchronous reluctance motor with fractional slot winding V Dmitrievskii, V Prakht, V Kazakbaev IEEE Transactions on Industry Applications 55 (5), 4676-4684, 2019 | 31 | 2019 |
Developing ultra premium efficiency (IE5 class) magnet-free synchronous reluctance motor V Dmitrievskii, V Prakht, V Kazakbaev, S Oshurbekov, I Sokolov 2016 6th International Electric Drives Production Conference (EDPC), 2-7, 2016 | 29 | 2016 |
Calculation of the efficiency and power consumption of induction IE2 and synchronous reluctance IE5 electric drives in the pump application based on the passport specification … N Safin, V Kazakbaev, V Prakht, V Dmitrievskii 2018 25th International Workshop on Electric Drives: Optimization in Control …, 2018 | 27 | 2018 |
Comparison of power consumption of synchronous reluctance and induction motor drives in a 0.75 kW pump unit V Kazakbaev, V Prakht, V Dmitrievskii, S Sarapulov, D Askerov 2017 International Siberian Conference on Control and Communications (SIBCON …, 2017 | 26 | 2017 |
Comparison between rare-earth and ferrite permanent magnet flux-switching generators for gearless wind turbines V Prakht, V Dmitrievskii, V Kazakbaev, MN Ibrahim Energy Reports 6, 1365-1369, 2020 | 22 | 2020 |
Comparative Study of Induction Motors of IE2, IE3 and IE4 Efficiency Classes in Pump Applications Taking into Account CO2 Emission Intensity V Goman, V Prakht, V Kazakbaev, V Dmitrievskii Applied Sciences 10 (23), 8536, 2020 | 21 | 2020 |
Development of a high efficient electric drive with synchronous reluctance motor V Dmitrievskii, V Prakht, V Kazakbaev, A Pozdeev, S Oshurbekov 2015 18th International Conference on Electrical Machines and Systems (ICEMS …, 2015 | 21 | 2015 |
Traction synchronous homopolar motor: simplified computation technique and experimental validation V Dmitrievskii, V Prakht, A Anuchin, V Kazakbaev IEEE Access 8, 185112-185120, 2020 | 20 | 2020 |
Comparative Study of Energy Consumption and CO2 Emissions of Variable-Speed Electric Drives with Induction and Synchronous Reluctance Motors in Pump Units V Goman, V Prakht, V Kazakbaev, V Dmitrievskii Mathematics 9 (21), 2679, 2021 | 19 | 2021 |
Comparison of interior permanent magnet and synchronous homopolar motors for a mining dump truck traction drive operated in wide constant power speed range V Dmitrievskii, V Prakht, V Kazakbaev, A Anuchin Mathematics 10 (9), 1581, 2022 | 18 | 2022 |
Optimal design of a high-speed single-phase flux reversal motor for vacuum cleaners V Dmitrievskii, V Prakht, V Kazakbaev, S Sarapulov Energies 11 (12), 3334, 2018 | 18 | 2018 |
A comparative performance analysis of induction and synchronous reluctant motors in an adjustable-speed electric drive VM Kazakbaev, VA Prakht, VA Dmitrievskii Russian Electrical Engineering 88, 233-238, 2017 | 17 | 2017 |
Ultra premium efficiency (IE5 energy-efficiency class) synchronous reluctance motor with fractional slot winding VA Dmitrievskii, VA Prakht, VM Kazakbaev 2018 XIII International Conference on Electrical Machines (ICEM), 1015-1020, 2018 | 15 | 2018 |
Comparative study of electrically excited conventional and homopolar synchronous motors for the traction drive of a mining dump truck operating in a wide speed range in field … V Prakht, V Dmitrievskii, V Kazakbaev, A Anuchin Mathematics 10 (18), 3364, 2022 | 13 | 2022 |
Inverter volt-ampere capacity reduction by optimization of the traction synchronous homopolar motor V Prakht, V Dmitrievskii, A Anuchin, V Kazakbaev Mathematics 9 (22), 2859, 2021 | 13 | 2021 |
Design optimization of a traction synchronous homopolar motor V Dmitrievskii, V Prakht, A Anuchin, V Kazakbaev Mathematics 9 (12), 1352, 2021 | 12 | 2021 |
Comparative study of induction and wound rotor synchronous motors for the traction drive of a mining dump truck operating in wide constant power speed range V Dmitrievskii, V Prakht, E Valeev, A Paramonov, V Kazakbaev, ... IEEE Access, 2023 | 10 | 2023 |