Reducing Noise and Impact of High-Frequency Torque Ripple Caused by Injection Voltages by Using Self-Regulating Random Model Algorithm for SynRMs Sensorless Speed Control
Abstract
:1. Introduction
2. Random Square-Wave-Type Voltage Injection Sensorless Control Strategy for SynRMs
2.1. The Mathematical Model of a SynRM
2.2. Sensorless Control Based on Square-Wave-Type Voltage Injection
2.3. Random High-Frequency Square-Wave-Type Voltage Injection Method Description
3. Torque Ripple Analysis
3.1. The Torque Ripple Phenomenon Caused by Injected Voltage
3.2. Analysis of the Torque Ripple Phenomenon in SynRMs
4. Introduction of the Proposed Self-Regulating Random Model Algorithm
4.1. Operation Mode of the Self-Regulating Random Model Algorithm
4.2. Operation Mode of the Quantity Adaptive Module
4.3. Operation Mode of the Evaluation Module
4.4. Operation Mode of the Update Model Module
4.5. Sensorless Control Using Self-Regulating Random Model Algorithm
5. Analysis of PSD
6. Experimental Research
6.1. Validation of Self-Regulating Random Model Algorithm Performance
6.2. Reduction in Torque Ripple and Speed Fluctuation
6.3. Verification of Noise Reduction Effect Using SRRMM
7. Conclusions
Supplementary Materials
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Wu, X.; Huang, S.; Liu, K.; Lu, K.; Hu, Y.; Pan, W.; Peng, X. Enhanced Position Sensorless Control Using Bilinear Recursive Least Squares Adaptive Filter for Interior Permanent Magnet Synchronous Motor. IEEE Trans. Power Electron. 2020, 35, 681–698. [Google Scholar] [CrossRef]
- Yousefi-Talouki, A.; Boldea, I. Combined active flux and high-frequency injection methods for sensorless direct-flux vector control of synchronous reluctance machines. IEEE Trans. Power Electron. 2019, 33, 2447–2457. [Google Scholar] [CrossRef]
- Ichikawa, S.; Okuma, S. Sensorless control of synchronous reluctance motors based on extended EMF models considering magnetic saturation with online parameter identification. IEEE Trans. Ind. Appl. 2006, 42, 1264–1274. [Google Scholar] [CrossRef]
- Wang, D.; Lu, K.; Rasmussen, P.O. Improved Closed-Loop Flux Observer Based Sensorless Control Against System Oscillation for Synchronous Reluctance Machine Drives. IEEE Trans. Power Electron. 2019, 34, 4593–4602. [Google Scholar]
- Varatharajan, A.; Pellegrino, G.; Armando, E. Sensorless synchronous reluctance motor drives: Auxiliary flux-based position observer. IEEE J. Emerg. Sel. Top. Power Electron. 2021, 9, 4330–4339. [Google Scholar] [CrossRef]
- Zhang, Z.; Lamb, J. Active Q Flux Concept for Sensorless Control of Synchronous Reluctance Machines. IEEE Trans. Ind. Electron. 2023, 70, 4526–4536. [Google Scholar] [CrossRef]
- Gao, F.; Yin, Z.; Bai, C.; Yuan, D.; Liu, J. A Lag Compensation-Enhanced Adaptive Quasi-Fading Kalman Filter for Sensorless Control of Synchronous Reluctance Motor. IEEE Trans. Power Electron. 2022, 37, 15322–15337. [Google Scholar] [CrossRef]
- Pasqualotto, D.; Rigon, S.; Zigliotto, M. Sensorless Speed Control of Synchronous Reluctance Motor Drives Based on Extended Kalman Filter and Neural Magnetic Model. IEEE Trans. Ind. Electron. 2023, 70, 1321–1330. [Google Scholar] [CrossRef]
- Foti, S.; De Caro, S.; Scimone, T.; Testa, A.; Tornello, L.D.; Scelba, G.; Cacciato, M. Rotor Position Error Compensation in Sensorless Synchronous Reluctance Motor Drives. IEEE Trans. Power Electron. 2022, 37, 4442–4452. [Google Scholar] [CrossRef]
- Yousefi-Talouki, A.; Pescetto, P.; Pellegrino, G. Sensorless Direct Flux Vector Control of Synchronous Reluctance Motors Including Standstill, MTPA, and Flux Weakening. IEEE Trans. Ind. Appl. 2017, 53, 3598–3608. [Google Scholar] [CrossRef]
- Chen, J.; Fan, Y.; Wang, W.; Lee, C.H.T.; Wang, Y. Sensorless Control for SynRM Drives Using a Pseudo-Random High-Frequency Triangular-Wave Current Signal Injection Scheme. IEEE Trans. Power Electron. 2022, 37, 7122–7131. [Google Scholar] [CrossRef]
- Yoon, Y.-D.; Sul, S.-K.; Morimoto, S.; Ide, K. High-Bandwidth Sensorless Algorithm for AC Machines Based on Square-Wave-Type Voltage Injection. IEEE Trans. Ind. Appl. 2011, 47, 1361–1370. [Google Scholar] [CrossRef]
- Li, C.; Wang, G.; Zhang, G.; Zhao, N.; Xu, D. Adaptive Pseudorandom High-Frequency Square-Wave Voltage Injection Based Sensorless Control for SynRM Drives. IEEE Trans. Power Electron. 2021, 36, 3200–3210. [Google Scholar] [CrossRef]
- Zhang, G.; Xiang, R.; Wang, G.; Li, C.; Bi, G.; Zhao, N.; Xu, D. Hybrid Pseudorandom Signal Injection for Position Sensorless SynRM Drives With Acoustic Noise Reduction. IEEE Trans. Transport. Electrification 2022, 8, 1313–1325. [Google Scholar]
- Zhang, Y.; Yin, Z.; Liu, J.; Zhang, R.; Sun, X. IPMSM Sensorless Control Using High-Frequency Voltage Injection Method With Random Switching Frequency for Audible Noise Improvement. IEEE Trans. Ind. Electron. 2020, 67, 6019–6030. [Google Scholar] [CrossRef]
- Lv, L.; Hu, Z.; Li, S.; Guo, R.; Wang, J.; Wang, G.; Li, S. Variable-Angle Random High-Frequency Voltage Injection Strategy with Cross-Saturation Effect Compensation for Sensorless Synchronous Reluctance Motor Drives. Energies 2024, 17, 725. [Google Scholar] [CrossRef]
- Li, C.; Wang, G.; Zhang, G.; Xu, D.; Xiao, D. Saliency-Based Sensorless Control for SynRM Drives With Suppression of Position Estimation Error. IEEE Trans. Ind. Electron. 2019, 66, 5839–5849. [Google Scholar] [CrossRef]
- Li, C.; Wang, G.; Zhang, G.; Zhao, N.; Gao, Y.; Xu, D. Torque Ripples Minimization of Sensorless SynRM Drives for Low-Speed Operation Using Bi-HFSI Scheme. IEEE Trans. Ind. Electron. 2021, 68, 5559–5570. [Google Scholar] [CrossRef]
- Varatharajan, A.; Pellegrino, G.; Mariani, G.B.; Voyer, N.; Satake, A. LUT-Less Sensorless Control of Synchronous Reluctance Machines Using the Locus of Incremental Saliency Ratio Tracking (LIST). IEEE Trans. Ind. Electron. 2022, 69, 6530–6539. [Google Scholar] [CrossRef]
- Bugsch, M.; Piepenbreier, B. High-Bandwidth Sensorless Control of Synchronous Reluctance Machines in the Low- and Zero-Speed Range. IEEE Trans. Ind. Appl. 2020, 56, 2663–2672. [Google Scholar] [CrossRef]
- Lin, Z.; Li, X.; Wang, Z.; Shi, T.; Xia, C. Minimization of Additional High-Frequency Torque Ripple for Square-Wave Voltage Injection IPMSM Sensorless Drives. IEEE Trans. Power Electron. 2020, 35, 13345–13355. [Google Scholar] [CrossRef]
- Chen, Q.; Yan, Y.; Xu, G.; Xu, M.; Liu, G. Principle of Torque Ripple Reduction in Synchronous Reluctance Motors With Shifted Asymmetrical Poles. IEEE J. Emerg. Sel. Top. Power Electron. 2020, 8, 2611–2622. [Google Scholar] [CrossRef]
- Qu, J.; Zhang, C.; Jatskevich, J.; Zhang, S. Deadbeat Harmonic Current Control of Permanent Magnet Synchronous Machine Drives for Torque Ripple Reduction. IEEE J. Emerg. Sel. Top. Power Electron. 2022, 10, 3357–3370. [Google Scholar] [CrossRef]
- Woo, T.-G.; Park, S.-W.; Choi, S.-C.; Lee, H.-J.; Yoon, Y.-D. Flux Saturation Model Including Cross Saturation for Synchronous Reluctance Machines and Its Identification Method at Standstill. IEEE Trans. Ind. Electron. 2023, 70, 2318–2328. [Google Scholar] [CrossRef]
- Hinkkanen, M.; Pescetto, P.; Mölsä, E.; Saarakkala, S.E.; Pellegrino, G.; Bojoi, R. Sensorless Self-Commissioning of Synchronous Reluctance Motors at Standstill Without Rotor Locking. IEEE Trans. Ind. Appl. 2017, 53, 2120–2129. [Google Scholar] [CrossRef]
- Hwang, C.-E.; Lee, Y.; Sul, S.-K. Analysis on Position Estimation Error in Position-Sensorless Operation of IPMSM Using Pulsating Square Wave Signal Injection. IEEE Trans. Ind. Appl. 2019, 55, 458–470. [Google Scholar] [CrossRef]
- Tse, K.K.; Chung, H.S.-H.; Huo, S.Y.; So, H.C. Analysis and spectral characteristics of a spread-spectrum technique for conducted EMI suppression. IEEE Trans. Power Electron. 2000, 15, 399–410. [Google Scholar] [CrossRef]
- Tse, K.K.; Chung, H.S.-H.; Hui, S.Y.R.; So, H.C. A comparative investigation on the use of random modulation schemes for DC/DC converters. IEEE Trans. Ind. Electron. 2000, 47, 253–263. [Google Scholar] [CrossRef]
Number | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 |
Amplitude (V) | 15 | 30 | 15 | 30 | 15 | 30 | 60 | 30 | 60 | |||
Period (s) | ||||||||||||
Phase |
Speed Bias | −2 | −1 | 0 | 1 | 2 |
Number | 5 | 4, 6, 11 | 3, 7, 10, 12 | 2, 8, 9 | 1 |
Parameter | Value |
---|---|
Pole Pairs | 2 |
Resistance | |
Rated Current | 12.5 A |
Rated Voltage | 380 V |
D-Axis Inductance | 43.9 mH |
Q-Axis Inductance | 22.1 mH |
Load State | No Load | Rated Load |
---|---|---|
OVIM (2.5 kHz) | 76.3 dB | 76.7 dB |
OVIM(1.25 kHz) | 76.5 dB | 77.1 dB |
RVIM | 71.2 dB | 71.4 dB |
SRRMM | 70.9 dB | 70.9 dB |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Guo, Y.; Pan, L.; Yang, Y.; Gong, Y.; Che, X. Reducing Noise and Impact of High-Frequency Torque Ripple Caused by Injection Voltages by Using Self-Regulating Random Model Algorithm for SynRMs Sensorless Speed Control. Electronics 2024, 13, 3327. https://doi.org/10.3390/electronics13163327
Guo Y, Pan L, Yang Y, Gong Y, Che X. Reducing Noise and Impact of High-Frequency Torque Ripple Caused by Injection Voltages by Using Self-Regulating Random Model Algorithm for SynRMs Sensorless Speed Control. Electronics. 2024; 13(16):3327. https://doi.org/10.3390/electronics13163327
Chicago/Turabian StyleGuo, Yibo, Lingyun Pan, Yang Yang, Yimin Gong, and Xiaolei Che. 2024. "Reducing Noise and Impact of High-Frequency Torque Ripple Caused by Injection Voltages by Using Self-Regulating Random Model Algorithm for SynRMs Sensorless Speed Control" Electronics 13, no. 16: 3327. https://doi.org/10.3390/electronics13163327
APA StyleGuo, Y., Pan, L., Yang, Y., Gong, Y., & Che, X. (2024). Reducing Noise and Impact of High-Frequency Torque Ripple Caused by Injection Voltages by Using Self-Regulating Random Model Algorithm for SynRMs Sensorless Speed Control. Electronics, 13(16), 3327. https://doi.org/10.3390/electronics13163327