[
Arkkio, A., Cederstrom, S., Awan, H., Asad, A., Saarakkala, S.E., Holopainen, T.P. (2018). Additional losses of electrical machines under torsional vibration. IEEE Trans. Energy Convers., 33, 245–251.
]Search in Google Scholar
[
Barros, J., de Apraiz, M., Diego, R.I. (2007). Measurement of subharmonics in power voltages. Power Tech 2007 IEEE Conference, Lausanne, 1–5 July, 1736–1740.
]Search in Google Scholar
[
Bolen, M.H.J., Gu, I.Y.H. (2006). Signal processing of power quality disturbances. New York: Wiley.
]Search in Google Scholar
[
Crotti, G., Avanzo, G.D, LetIizia, P.S., Luiso, M. (2021). Measuring harmonics with inductive voltage transformers in presence of subharmonics. IEEE Transactions on Instrumentation and Measurement, 70, 1–13.
]Search in Google Scholar
[
Donolo, P.D., Pezzani, C., Quispe, E.C., dE Angelo, C.H. (2017). Comparative analysis of the effects of voltage unbalance on the performance of IE 4 electric motors. 10th International Conference on Energy Efficiency in Motor Driven Systems – EEMODS´, Rome.
]Search in Google Scholar
[
Feese, T., Ryan, M. (2008). Torsional vibration problem with motor/ID fan system due to PWM variable frequency drive. In Proceedings of the 37th Turbomachinery Symposium; Texas A&M University, Turbomachinery Laboratories: College Station, Texas, 45–56.
]Search in Google Scholar
[
Fonseca, D.S.B., Santos, C.M.C, Cardoso, A.J.M. (2020). Stator faults modeling and diagnostics of line-start permanent magnet Synchronous motors. IEEE Transactions on Industry Applications, 56(3), 2590–2599.
]Search in Google Scholar
[
Gallo, D., Landi, C., Langella, R., Testa, A. (2005). Limits for low frequency interharmonic voltages: Can they be based on the flickermeter use. In Proceedings of the 2005 IEEE Russia Power Tech, St. Petersburg, 27–30 June, 1–7.
]Search in Google Scholar
[
Ganesan, A.U., Chokkalingam, L.N. (2019). Review on the evolution of technology advancements and applications of line-start synchronous machines. IET Electric Power Applications, 13(1), 1–16.
]Search in Google Scholar
[
Ghaseminezhad, M., Doroudi, A., Hosseinian, S.H., Jalilian, A. (2017). Analysis of voltage fluctuation impact on induction motors by an innovative equivalent circuit considering the speed changes. IET Gener. Transm. Distrib., 11, 512–519. https://doi.org/10.1049/iet-gtd.2016.1063
]Search in Google Scholar
[
Ghaseminezhad, M., Doroudi, A., Hosseinian, S.H., Jalilian, A. (January 2017). An investigation of induction motor saturation under voltage fluctuation conditions. Journal of Magnetics, 22, 306–314. https://doi.org/10.4283/JMAG.2017.22.2.306
]Search in Google Scholar
[
Ghaseminezhad, M., Doroudi, A., Hosseinian, S.H., Jalilian, A. (April 2021). Analytical field study on induction motors under fluctuated voltages. Iranian Journal of Electrical and Electronic Engineering, 17(1), 1620–1620. https://doi.org/10.22068/IJEEE.17.1.1620
]Search in Google Scholar
[
Ghaseminezhad, M., Doroudi, A., Hosseinian, S.H., Jalilian, A. (October 2021). High torque and excessive vibration on the induction motors under special voltage fluctuation conditions. COMPEL – The international journal for computation and mathematics in electrical and electronic engineering, 40(4), 822–836. https://doi.org/10.1108/COMPEL-07-2020-0234
]Search in Google Scholar
[
Gnaciński, P., Hallmann, D., Pepliński, M., Jankowski, P. (2019). The effects of voltage subharmonics on cage induction machine. International Journal of Electrical Power&Energy Systems, 111, 125–131. https://doi.org/10.1016/j.ijepes.2019.04.009
]Search in Google Scholar
[
Gnaciński, P., Pepliński, M., Murawski, L., Szeleziński, A. (July 2019). Vibration of induction machine supplied with voltage containing subharmonics and interharmonics. IEEE Trans. Energy Convers., 34, 1928-1937, https://doi.org/10.1109/TEC.2019.2929534
]Search in Google Scholar
[
Gnaciński, P., Klimczak, P. (2020). High-Power induction motors supplied with voltage containing subharmonics. Energies, 13, 5894, https://doi.org/10.3390/en13225894
]Search in Google Scholar
[
Gnaciński, P., Muc, A., Pepliński, M. (December 2021). Influence of Voltage Subharmonics on Line Start Permanent Magnet Synchronous Motor. IEEE Access, 9, 164275–164281. https://doi.org/10.1109/ACCESS.2021.3133279
]Search in Google Scholar
[
Gnaciński, P., Hallmann, D., Klimczak, P., Muc, A., Pepliński, M. (February 2021). Effects of voltage interharmonics on cage induction motors. Energies, 14(5), 1218. https://doi.org/10.3390/en14051218
]Search in Google Scholar
[
Gnaciński, P., Muc, A., Pepliński, M. (2023). Line Start Permanent Magnet Synchronous Motor supplied with voltage containing subharmonics. Scientific Journals of the Maritime University of Szczecin, 74. https://repository.am.szczecin.pl/handle/123456789/2774
]Search in Google Scholar
[
Ho, S. L. Fu, W. N. (2001). Analysis of indirect temperature-rise tests of induction machines using time stepping finite element method. IEEE Trans. on Energy Conversion, 16(1).
]Search in Google Scholar
[
Kolagar, A.D., Shoulaie, A. (2011). Reduction of undesired harmonic components in a steel industrial plant with DC electric arc furnaces. Proc. Second Power Electronics, Drive Systems and Technologies Conf.
]Search in Google Scholar
[
Maraaba, L.S., Milhem, A.S., Nemer, I.A., Al-Duwaish. H., Abido, M.A. (2020). Convolutional neural network-based inter-turn fault diagnosis in LSPMSMs. IEEE Access, 8, 81960–81970.
]Search in Google Scholar
[
Nassif, A.B. (2019). Assessing the impact of harmonics and interharmonics of top and mudpump variable frequency drives in drilling rigs. IEEE Transactions on Industry Applications, 55(6), 5574–5583.
]Search in Google Scholar
[
Pechivanidou, M.S.C., Kladas, A.G. (2019). Comparison of alternate LSPMSM topologies considering both transient and steady-state operating characteristics. IEEE Workshop on Electrical Machines Design, Control and Diagnosis (WEMDCD), Athens, 40–45.
]Search in Google Scholar
[
Perez, R.X. (2022). Design, modeling and reliability in rotating machinery. Hoboken: Wiley.
]Search in Google Scholar
[
Sethupathi, P., Senthilnathan, N. (2020). Comparative analysis of line-start permanent magnet synchronous motor and squirrel cage induction motor under customary power quality indices. Electrical Engineering, 102(3), 1339–1349.
]Search in Google Scholar
[
Soltani, H., Davari, P., Zare, F., Blaabjerg, F. (2018). Effects of modulation techniques on the input current interharmonics of adjustable speed drives. IEEE Trans. Ind. Electron., 65, 167–178.
]Search in Google Scholar
[
Sürgevil, T., Akpnar, E. (2009). Effects of electric arc furnace loads on synchronous generators and asynchronous motors. In Proc. of. International Conference on Electrical and Electronics Engineering ELECO2009. Turkey: Bursa. I-49–I-53.
]Search in Google Scholar
[
Tabora, J.M., de Lima Tostes, M. E., de Matos, E.O., Bezerra, U. H., Soares, T.M., de Albuquerque, B.S. (2020). Assessing voltage unbalance conditions in IE2, IE3 and IE4 classes induction motors. IEEE Access, 8, 186725–186739.
]Search in Google Scholar
[
Tarasiuk, T. (2011). Estimator-analyzer of power quality: Part I – Methods and algorithms. Measurement: Journal of the International Measurement Confederation, 44(1), 238–247.9.
]Search in Google Scholar
[
Tennakoon, S., Perera, S. and Robinson, D. (2008). Flicker attenuation—Part I: Response of three-phase induction motors to regular voltage fluctuations. IEEE Trans. Power Deliv., 23, 1207–1214.
]Search in Google Scholar
[
Testa, A. et.al. (2007). Interharmonics: Theory and modelling. IEEE Trans. Power Deliv., 22, 2335–2348.
]Search in Google Scholar
[
Tripp, H., Kim, D., Whitney, R. (1993). A Comprehensive Cause Analysis of a Coupling Failure Induced by Torsional Oscillations in a Variable Speed Motor. In Proceedings of the 22nd Turbomachinery Symposium. Texas A&M University. Turbomachinery Laboratories 23.
]Search in Google Scholar
[
Xie, X., Zhang, X., Liu, H., Li, Y., Zhang, Ch. (2017). Characteristic analysis of subsynchronous resonance in practical wind farms connected to series-compensated transmissions. IEEE Trans. Energy Convers., 32, 1117–1126.
]Search in Google Scholar
[
Zhiyuan, M., Xiong, M.W., Le, L., Zhong, X. (2017). Interharmonics analysis of a 7.5 kW air compressor motor. CIRED Open Access Proc. J., 1, 738–741.
]Search in Google Scholar