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2022 | OriginalPaper | Buchkapitel

Assessment of Various Vector Control Schemes for PMSM Drive Application

verfasst von : Kodumur Meesala Ravi Eswar, Chokkalingam Bharatiraja, Jayakumar Vinoth

Erschienen in: Proceedings of International Conference on Power Electronics and Renewable Energy Systems

Verlag: Springer Singapore

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Abstract

Currently, the operation of Finite Control Set Model Predictive Control (FCS-MPC) schemes in electric motor drives domain is emerging. Its distinguished features are: intuitive, simple and easy insertion of multi-objectives. The application of FCS-MPC in permanent magnet synchronous motor (PMSM) drive has several benefits in terms of improving the performance when compared with direct torque control (DTC)-operated PMSM drive. The FCS-MPC scheme is categorized into two: predictive torque control (PTC) and predictive current control (PCC). This paper deals with comparative evaluation of these control schemes for PMSM drive operation concerning flux and torque ripple, and current THD. Therefore, the gained results are analyzed for PMSM drive highlighting the benefits of FCS-MPC over DTC.

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Literatur
1.
Zurück zum Zitat Samir K, Rodriguez J, Wu B, Bernet S, Perez M (2012) Powering the future of industry: high-power adjustable speed drive topologies. IEEE Ind Appl Mag 18(4):26–39CrossRef Samir K, Rodriguez J, Wu B, Bernet S, Perez M (2012) Powering the future of industry: high-power adjustable speed drive topologies. IEEE Ind Appl Mag 18(4):26–39CrossRef
2.
Zurück zum Zitat Behzad A, Rahrovi B (2010) Minimum-copper-loss control over full speed range of an IPMSM drive for hybrid electric vehicle application. In: 2010 IEEE vehicle power and propulsion conference, pp 1–6 Behzad A, Rahrovi B (2010) Minimum-copper-loss control over full speed range of an IPMSM drive for hybrid electric vehicle application. In: 2010 IEEE vehicle power and propulsion conference, pp 1–6
3.
Zurück zum Zitat Felix B (1972) The principle of field orientation as applied to the new TRANSVECTOR closed loop control system for rotating field machines. Siemens Rev 34(5):217–220 Felix B (1972) The principle of field orientation as applied to the new TRANSVECTOR closed loop control system for rotating field machines. Siemens Rev 34(5):217–220
4.
Zurück zum Zitat Pradeep K, Dhundhara S, Makin R (2016) Performance analysis of PMSM drive based on FOC technique with and without MRAS method. In: 2016 International Conference on Recent Advances and Innovations in Engineering (ICRAIE), pp 1–6 Pradeep K, Dhundhara S, Makin R (2016) Performance analysis of PMSM drive based on FOC technique with and without MRAS method. In: 2016 International Conference on Recent Advances and Innovations in Engineering (ICRAIE), pp 1–6
5.
Zurück zum Zitat Fatih K, Topaloglu I, Faruk Cakir M, Gurbuz R (2013) Comparative performance evaluation of FOC and DTC controlled PMSM drives. In: 4th international conference on power engineering, energy and electrical drives, pp 705–708 Fatih K, Topaloglu I, Faruk Cakir M, Gurbuz R (2013) Comparative performance evaluation of FOC and DTC controlled PMSM drives. In: 4th international conference on power engineering, energy and electrical drives, pp 705–708
6.
Zurück zum Zitat Isao T, Noguchi T (1986) A new quick-response and high-efficiency control strategy of an induction motor. IEEE Trans Industry Appl IA-22(5):820–827 Isao T, Noguchi T (1986) A new quick-response and high-efficiency control strategy of an induction motor. IEEE Trans Industry Appl IA-22(5):820–827
7.
Zurück zum Zitat Mino-Aguilar G et al (2010) A direct torque control for a PMSM. In: 2010 20th international conference on electronics communications and computers, pp 260–264 Mino-Aguilar G et al (2010) A direct torque control for a PMSM. In: 2010 20th international conference on electronics communications and computers, pp 260–264
8.
Zurück zum Zitat Dehong Z, Zhao J, Li Y (2016) Model-predictive control scheme of five-leg AC–DC–AC converter-fed induction motor drive. IEEE Trans Industr Electron 63(7):4517–4526CrossRef Dehong Z, Zhao J, Li Y (2016) Model-predictive control scheme of five-leg AC–DC–AC converter-fed induction motor drive. IEEE Trans Industr Electron 63(7):4517–4526CrossRef
9.
Zurück zum Zitat Jose R, Kazmierkowski MP, Espinoza JR, Zanchetta P, Abu-Rub H, Young HA, Rojas CA (2013) State of the art of finite control set model predictive control in power electronics. IEEE Trans Industrial Informatics 9(2):1003–1016 Jose R, Kazmierkowski MP, Espinoza JR, Zanchetta P, Abu-Rub H, Young HA, Rojas CA (2013) State of the art of finite control set model predictive control in power electronics. IEEE Trans Industrial Informatics 9(2):1003–1016
10.
Zurück zum Zitat Turker T, Buyukkeles U, Faruk Bakan A (2016) A robust predictive current controller for PMSM drives. IEEE Trans Industrial Electronics 63(6):3906–3914 Turker T, Buyukkeles U, Faruk Bakan A (2016) A robust predictive current controller for PMSM drives. IEEE Trans Industrial Electronics 63(6):3906–3914
12.
Zurück zum Zitat Eshwar K, Vinay Kumar T (2020) Effective predictive torque control scheme for four‐level open‐end winding permanent magnet synchronous motor drive. Int Trans Electrical Energy Syst 30(10):e12536 Eshwar K, Vinay Kumar T (2020) Effective predictive torque control scheme for four‐level open‐end winding permanent magnet synchronous motor drive. Int Trans Electrical Energy Syst 30(10):e12536
Metadaten
Titel
Assessment of Various Vector Control Schemes for PMSM Drive Application
verfasst von
Kodumur Meesala Ravi Eswar
Chokkalingam Bharatiraja
Jayakumar Vinoth
Copyright-Jahr
2022
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-16-4943-1_6