Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix Converter
This paper proposes a Capacitor Excited Induction Generator (CEIG)-Matrix Converter (MC) system for feeding stand-alone AC loads. The variable output voltage magnitude and frequency from CEIG is converted into a constant voltage magnitude and frequency at the load terminals by controlling MC using S...
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doaj-3e92f04ab94c4ac9a6f72c2663083cb52020-11-24T23:17:51ZengElsevierEngineering Science and Technology, an International Journal2215-09862017-04-0120264966110.1016/j.jestch.2017.02.006Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix ConverterSumedha Mahajan0SenthilKumar Subramaniam1Kumaresan Natarajan2Ammasai Gounden Nanjappa Gounder3Devendra Varma Borru4National Institute of Technology, Tiruchirappalli, Tamilnadu 620 015, IndiaNational Institute of Technology, Tiruchirappalli, Tamilnadu 620 015, IndiaNational Institute of Technology, Tiruchirappalli, Tamilnadu 620 015, IndiaNational Institute of Technology, Tiruchirappalli, Tamilnadu 620 015, IndiaVignan’s University, Guntur, Andhra Pradesh, IndiaThis paper proposes a Capacitor Excited Induction Generator (CEIG)-Matrix Converter (MC) system for feeding stand-alone AC loads. The variable output voltage magnitude and frequency from CEIG is converted into a constant voltage magnitude and frequency at the load terminals by controlling MC using Space Vector Modulation (SVM) technique. This single-stage MC is turned up as a good alternative for the proposed system against commonly used AC/DC/AC two stage power converters. The configuration and implementation of the closed-loop control scheme employing dSPACE 1103 real time controller have been fully described in the paper. The proposed closed-loop controller regulates the AC load voltage irrespective of changes in the prime mover speed and load. A method for predetermining the steady-state performance of the proposed system has been developed and described with relevant analytical expressions. The effectiveness of the proposed system is exemplified through simulation results for various operating conditions. The proposed control technique is further validated using an experimental setup developed in the laboratory.http://www.sciencedirect.com/science/article/pii/S2215098616305250Capacitor-Excited Induction Generator (CEIG)Matrix Converter (MC)Particle Swarm Optimization (PSO)Space Vector Modulation (SVM)Steady-state analysisWind energy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sumedha Mahajan SenthilKumar Subramaniam Kumaresan Natarajan Ammasai Gounden Nanjappa Gounder Devendra Varma Borru |
spellingShingle |
Sumedha Mahajan SenthilKumar Subramaniam Kumaresan Natarajan Ammasai Gounden Nanjappa Gounder Devendra Varma Borru Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix Converter Engineering Science and Technology, an International Journal Capacitor-Excited Induction Generator (CEIG) Matrix Converter (MC) Particle Swarm Optimization (PSO) Space Vector Modulation (SVM) Steady-state analysis Wind energy |
author_facet |
Sumedha Mahajan SenthilKumar Subramaniam Kumaresan Natarajan Ammasai Gounden Nanjappa Gounder Devendra Varma Borru |
author_sort |
Sumedha Mahajan |
title |
Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix Converter |
title_short |
Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix Converter |
title_full |
Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix Converter |
title_fullStr |
Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix Converter |
title_full_unstemmed |
Analysis and control of induction generator supplying stand-alone AC loads employing a Matrix Converter |
title_sort |
analysis and control of induction generator supplying stand-alone ac loads employing a matrix converter |
publisher |
Elsevier |
series |
Engineering Science and Technology, an International Journal |
issn |
2215-0986 |
publishDate |
2017-04-01 |
description |
This paper proposes a Capacitor Excited Induction Generator (CEIG)-Matrix Converter (MC) system for feeding stand-alone AC loads. The variable output voltage magnitude and frequency from CEIG is converted into a constant voltage magnitude and frequency at the load terminals by controlling MC using Space Vector Modulation (SVM) technique. This single-stage MC is turned up as a good alternative for the proposed system against commonly used AC/DC/AC two stage power converters. The configuration and implementation of the closed-loop control scheme employing dSPACE 1103 real time controller have been fully described in the paper. The proposed closed-loop controller regulates the AC load voltage irrespective of changes in the prime mover speed and load. A method for predetermining the steady-state performance of the proposed system has been developed and described with relevant analytical expressions. The effectiveness of the proposed system is exemplified through simulation results for various operating conditions. The proposed control technique is further validated using an experimental setup developed in the laboratory. |
topic |
Capacitor-Excited Induction Generator (CEIG) Matrix Converter (MC) Particle Swarm Optimization (PSO) Space Vector Modulation (SVM) Steady-state analysis Wind energy |
url |
http://www.sciencedirect.com/science/article/pii/S2215098616305250 |
work_keys_str_mv |
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