Simulation of four quadrant fuzzy logic controlled matrix converter fed DC motor

This paper presents the concepts of a single-phase matrix converter as a universal converter for the four-quadrant operation of a DC motor. The Matrix converter is implemented as a rectifier, chopper, inverter and cyclo-converter for a high frequency step down has been presented in this paper. This...

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Published inI-Manager's Journal on Electrical Engineering Vol. 18; no. 3; p. 17
Main Authors Ruksana, S. K., Pavan, Kumar Karedla, Sai, Goutham K.
Format Journal Article
LanguageEnglish
Published Nagercoil iManager Publications 01.03.2025
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ISSN0973-8835
2230-7176
DOI10.26634/jee.18.3.21612

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Abstract This paper presents the concepts of a single-phase matrix converter as a universal converter for the four-quadrant operation of a DC motor. The Matrix converter is implemented as a rectifier, chopper, inverter and cyclo-converter for a high frequency step down has been presented in this paper. This will reduce the need for a new or extra converter. The technique used for the implementation of the proposed topology was sinusoidal pulse width modulation technique. This paper verifies the four possible conversion processes say AC-DC, DC-DC, DC-AC and AC-AC from a high frequency input to the desired low frequency output by the single phase matrix converter alone. The results of the four conversion topologies along with the filter has been presented in this paper. The proposed topology has been implemented in the MATLAB/SIMULINK software and the desired results for each of the converter topology has been verified
AbstractList This paper presents the concepts of a single-phase matrix converter as a universal converter for the four-quadrant operation of a DC motor. The Matrix converter is implemented as a rectifier, chopper, inverter and cyclo-converter for a high frequency step down has been presented in this paper. This will reduce the need for a new or extra converter. The technique used for the implementation of the proposed topology was sinusoidal pulse width modulation technique. This paper verifies the four possible conversion processes say AC-DC, DC-DC, DC-AC and AC-AC from a high frequency input to the desired low frequency output by the single phase matrix converter alone. The results of the four conversion topologies along with the filter has been presented in this paper. The proposed topology has been implemented in the MATLAB/SIMULINK software and the desired results for each of the converter topology has been verified.
This paper presents the concepts of a single-phase matrix converter as a universal converter for the four-quadrant operation of a DC motor. The Matrix converter is implemented as a rectifier, chopper, inverter and cyclo-converter for a high frequency step down has been presented in this paper. This will reduce the need for a new or extra converter. The technique used for the implementation of the proposed topology was sinusoidal pulse width modulation technique. This paper verifies the four possible conversion processes say AC-DC, DC-DC, DC-AC and AC-AC from a high frequency input to the desired low frequency output by the single phase matrix converter alone. The results of the four conversion topologies along with the filter has been presented in this paper. The proposed topology has been implemented in the MATLAB/SIMULINK software and the desired results for each of the converter topology has been verified
Author Sai, Goutham K.
Ruksana, S. K.
Pavan, Kumar Karedla
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Cites_doi 10.1049/ip-epa:19970848
10.1109/TIE.2011.2159353
10.1109/63.124596
10.11159/eee18.119
10.23883/IJRTER.2017.3488.4ON9Y
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StartPage 17
SubjectTerms Cycloconverters
D C motors
Electric motors
Electrical engineering
Fuzzy logic
Matrix converters
Pulse duration modulation
Quadrants
Simulation
Software
Topology
Title Simulation of four quadrant fuzzy logic controlled matrix converter fed DC motor
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