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2021 | OriginalPaper | Chapter

2. Speed Control of SEPIC Converter-Based Induction Motor Drive System

Authors : R. Meena Devi, V. Geetha, V. Meenakshi

Published in: Emerging Solutions for e-Mobility and Smart Grids

Publisher: Springer Singapore

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Abstract

This paper deals with speed control of single-ended primary inductance converter fed induction motor drives for water pumping application. A SEPIC converter with passive component is designed for PV system that provides regulated output voltage. In this, regulated voltage is used to drive induction motors in a wide range of speed. In closed loop, fuzzy logic control system is used to generate the switching pulse for SEPIC converter. Pulsating input current, high voltage stress of conventional method will make the unreliable for a wide range of speed. So, the SEPIC converter is used to for smooth speed control process. Simulation is down in MATLAB, Simulink. And then, implemented PV for induction motor drives is compared with theoretical values. SEPIC converter is well suitable for smooth speed control of induction motor. The SEPIC also has a simple controller that provides low noise operation.

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Literature
1.
go back to reference S. Kaliappan, R. Rajeswari, An investigation of power converters fed BLDC motor for adjustable speed. Circ. Syst. (2016) S. Kaliappan, R. Rajeswari, An investigation of power converters fed BLDC motor for adjustable speed. Circ. Syst. (2016)
2.
go back to reference S.K. Dwivedi, Isolated Active Waveshaping Techniques for Power Quality Improvements in Variable Frequency AC Drive (Elsevier BV, 2018) S.K. Dwivedi, Isolated Active Waveshaping Techniques for Power Quality Improvements in Variable Frequency AC Drive (Elsevier BV, 2018)
3.
go back to reference S. Malathi, Improved power quality buck boost converter for SMPS. Int. J. Electr. Comput. Eng. 9(2), 789–801 (2019) S. Malathi, Improved power quality buck boost converter for SMPS. Int. J. Electr. Comput. Eng. 9(2), 789–801 (2019)
4.
go back to reference X. Chen, G. Liu, Sensorless optimal commutation steady speed control method for a non-ideal back-EMF BLDC motor drive system including Buck Converter. IEEE Trans. Ind. Electron. (2019) X. Chen, G. Liu, Sensorless optimal commutation steady speed control method for a non-ideal back-EMF BLDC motor drive system including Buck Converter. IEEE Trans. Ind. Electron. (2019)
5.
go back to reference S. Gao, Y. Wang, Y. Guan, D. Xu, A high step up SEPIC-based converter based on partly interleaved transformer. A High Step Up SEPIC-Based Conics, vol. 67, Issue 2, pp. 1455–1465 (2020) S. Gao, Y. Wang, Y. Guan, D. Xu, A high step up SEPIC-based converter based on partly interleaved transformer. A High Step Up SEPIC-Based Conics, vol. 67, Issue 2, pp. 1455–1465 (2020)
6.
go back to reference R. Meena Devi, Fuzzy logic based sensorless speed control of SEPIC Fed BLDC drive. Int. J. Appl. Eng. Res. 10(2), 2715 R. Meena Devi, Fuzzy logic based sensorless speed control of SEPIC Fed BLDC drive. Int. J. Appl. Eng. Res. 10(2), 2715
7.
go back to reference R. Meenadevi, V. Geetha, PV fed bridgeless DC motor using zeta converter for water pumping, in Proceedings of the 2019 2nd International Conference on Power and Embedded Drive Control, ICPEDC 2019 (2019) R. Meenadevi, V. Geetha, PV fed bridgeless DC motor using zeta converter for water pumping, in Proceedings of the 2019 2nd International Conference on Power and Embedded Drive Control, ICPEDC 2019 (2019)
8.
go back to reference R. Meena Devi, L. Premalatha, A new PFC converter using bridgeless single-ended primary induction converter(SEPIC), in 2015 International Conference on Control Instrumentation Communication and Computational Technologies, ICCICCT 2015 R. Meena Devi, L. Premalatha, A new PFC converter using bridgeless single-ended primary induction converter(SEPIC), in 2015 International Conference on Control Instrumentation Communication and Computational Technologies, ICCICCT 2015
9.
go back to reference R. Meena Devi, L. Premalatha, Efficient figure converter fed PMBLDC motor using artificial neural network. Int. J. Electr. Comput. Eng. 9(4), 3025–3031 (2019) R. Meena Devi, L. Premalatha, Efficient figure converter fed PMBLDC motor using artificial neural network. Int. J. Electr. Comput. Eng. 9(4), 3025–3031 (2019)
10.
go back to reference A. Kavitha, G. Uma, Control of Choos in SEPIC DC-DC converter. Int. J. Control Autom. Syst. 8(6), 1320–1329 (2010)CrossRef A. Kavitha, G. Uma, Control of Choos in SEPIC DC-DC converter. Int. J. Control Autom. Syst. 8(6), 1320–1329 (2010)CrossRef
11.
go back to reference C.G. Bianchin, R. Gules, High-power-factor rectifier using the modified SEPIC converter operating in discontinuous conduction modes. IEEE Trans. Power Electron. 30(8), 4349 (2015) C.G. Bianchin, R. Gules, High-power-factor rectifier using the modified SEPIC converter operating in discontinuous conduction modes. IEEE Trans. Power Electron. 30(8), 4349 (2015)
12.
go back to reference K.J. Rathi, M.S. Ali, NNC for power electronics converter circuits. Int. J. Electr. Electron. Res. 4(1), 78–84 (2016) K.J. Rathi, M.S. Ali, NNC for power electronics converter circuits. Int. J. Electr. Electron. Res. 4(1), 78–84 (2016)
14.
go back to reference Y. Li et al., A sensorless commutation error correction method for high-speed BLDC motors based on phase current integration. IEEE Trans. Industr. Inform. 16(1) (2020) Y. Li et al., A sensorless commutation error correction method for high-speed BLDC motors based on phase current integration. IEEE Trans. Industr. Inform. 16(1) (2020)
15.
go back to reference S. Sashidhar et al., A single-stage sensorless control of a PV-based bore-well submersible BLDC motor. IEEE J. Emerg. Sel. Topics Power Electron. 7(2) (2019) S. Sashidhar et al., A single-stage sensorless control of a PV-based bore-well submersible BLDC motor. IEEE J. Emerg. Sel. Topics Power Electron. 7(2) (2019)
16.
go back to reference R. Meena Devi, M. Kavitha, V. Geetha, M. Preethi Pauline Mary, Fuzzy logic controller-based bridgeless Cuk converter for power factor correction, in Advances in Intelligent Systems and Computing, vol. 846 (AISC, 2018), pp. 371–379 R. Meena Devi, M. Kavitha, V. Geetha, M. Preethi Pauline Mary, Fuzzy logic controller-based bridgeless Cuk converter for power factor correction, in Advances in Intelligent Systems and Computing, vol. 846 (AISC, 2018), pp. 371–379
17.
go back to reference R. Meena Devi, L. Premalatha, Analysis of bridgeless converter model for power factor correction. Comput. Electr. Eng. 87, 106785 (2020) R. Meena Devi, L. Premalatha, Analysis of bridgeless converter model for power factor correction. Comput. Electr. Eng. 87, 106785 (2020)
Metadata
Title
Speed Control of SEPIC Converter-Based Induction Motor Drive System
Authors
R. Meena Devi
V. Geetha
V. Meenakshi
Copyright Year
2021
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-16-0719-6_2