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The Transactions of the Korean Institute of Electrical Engineers
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Trans. Korean. Inst. Elect. Eng.
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2022-12
(Vol.71 No.12)
10.5370/KIEE.2022.71.12.1764
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References
1
IEC TS 60034-31:2021, Rotating electrical machines - Part 31: Selection of energy-efficient motors including variable speed applications - Application guidelines
2
A. T. de Almeida, F. J. T. E. Ferreira, D. Both, 2005, Technical and economical considerations in the application of variable-speed drives with electric motor systems, in IEEE Transactions on Industry Applications, Vol. 41, No. 1, pp. 188-199
3
KS C IEC 60034-2-1, 2019, Rotating electrical machines - Part 2-1 : methods for determining losses and efficiency of rotating electrical machinery from test
4
KS C KSCIEC60034-30-1, 2019, Rotating electrical machines - Part 30-1: Efficiency classes of line operated AC motors(IE code)
5
KS C IEC 60034-2-3, 2019, Rotating electrical machines - Part 2-3: Specific test methods for determining losses and efficiency of converter-fed AC induction motors
6
IEC 60034-2-1:2014, Rotating electrical machines - Part 2-1: Standard methods for determining losses and efficiency from tests (excluding machines for traction vehicles)
7
IEC 60034-30-1:2014, Rotating elctrical machines - Part 30-1: Efficiency classes of line operated AC motors (IE code).
8
IEC 60034-2-3:2020, Rotating electrical machines - Part 2-3: Specific test methods for determining losses and efficiency of converter-fed AC induction motors
9
IEC TS 60034-30-2:2016, Rotating electrical machines - Part 30-2: Efficiency classes of variable speed AC motors (IE-code).
10
IEC 61800-9-1:2017, Adjustable speed electrical power drive systems. Part 9-1: Ecodesign for power drive systems, motor starters, power electronics and their driven applications. General requirements for setting energy efficiency standards for power driven equipment using the extended product approach (EPA) and semi analytic model (SAM).
11
IEC 61800-9-2:2017, Adjustable speed electrical power drive systems. Part 9-2: Ecodesign for power drive systems, motor starters, power electronics and their driven applications. Energy efficiency indicators for power drive systems and motor starters.
12
P. Pecinka, S. Kocman, P. Orsag, J. Otypka, 2017, Solutions to increase the efficiency of induction motors, 2017 18th International Scientific Conference on Electric Power Engineering (EPE), pp. 1-6
13
R. Ni, Feb 2016, Efficiency Enhancement of General AC Drive System by Remanufacturing Induction Motor With Interior Permanent-Magnet Rotor, in IEEE Transactions on Industrial Electronics, Vol. 63, No. 2, pp. 808-820
14
Husain, June 2021, Electric Drive Technology Trends, Challenges, and Opportunities for Future Electric Vehicles, in Proceedings of the IEEE, Vol. 109, No. 6, pp. 1039-1059