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References

1 
K.D Kim, Y.I Kim, 2021, Predictive Maintenance and Fault Diagnosis of Three-Phase Induction Motor Using MCSA (Motor Current Signature Analysis), Korean Journal of Air-Conditioning and Refrigeration Engineering, Vol. 33, No. 12, pp. 656-69Google Search
2 
F. Ferreira, B. Leperttre, A. Almeida, 2016, Comparison of Protection Requirements in IE2-, IE3-, and IE4-Class Motors, IEEE Transaction on Industry Applications, Vol. 52, No. 4, pp. 3603-3610DOI
3 
J.G. Kim, 2014, Characteristics Analysis for Motor or Generator Operating of Induction Machine with Deep or Double Cage Roto, New & Renewable Energy, Vol. 10, No. 4, pp. 3-8DOI
4 
M.S. Kim, C.E. Kim, 2021, Multi-Objective Optimum Design of Premium High Efficiency Induction Motor Using Parameter Learning, The Transactions of the Korean Institute of Electrical Engineers, Vol. 70, No. 7, pp. 991-998Google Search
5 
M.S. Kim, S.H. Lee, S.R. Hwang, H.J. Moon, C.E. Kim, 2022, A study on the optimization method of high-voltage induction motor considering temperature reduction, Proceedings of KIEE Summer Conference, pp. 1134-1135Google Search
6 
M.S. Kim, S.R. Hwang, H.J. Moon, C.E. Kim, 2021, The optimal design of premium high efficiency induction motor for cost reduction, Proceedings of KIEE Summer Conference, pp. 1081-1082Google Search
7 
J.M. Cha, J.H. Yun, W.G. Kim, S.H. Lee, 2014, Characteristic comparison between the induction motor with and without applying the magnetic wedges, Proceedings of KIEE Summer Conference, pp. 620-621Google Search
8 
Pajot Joseph, 2013, Optimal Design Exploration Using Global Response Surface Method: Rail Crush, Altair Engineering, pp. 1-2Google Search
9 
M. Chowdhury, M.S. Islam, M. Islam, 2019, Design Optimization of Interior Permanent Magnet Synchronous Machines Utilizing Global Response Surface Method for Variable Speed Drives, IEEE International Electric Machines & Drives Conference (IEMDC), pp. 609-614DOI