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Voltage Sag and Swell Mitigation Using Matrix Converter with Reduced Number of Switches


Affiliations
1 Department of EIE, Sathyabama University, Chennai-119, India
2 Department of EEE, Panimalar Institute of Technology, Chennai-123, India
 

Dynamic Voltage Restorer (DVR) is used in power distribution system to protect sensitive loads in voltage disturbances. The performance of DVR is related to the adopted configuration and control strategy used for inverters. In this paper, matrix converter with reduced number of switches (RMC) is used to improve operation of DVR to compensate voltage sag/swell. Simulation results using MATLAB/ Simulink are presented to demonstrate the feasibility and the practicality of the proposed novel Dynamic Voltage Restorer topology. Total Harmonic Distortion (THD) is calculated. The simulation results of new DVR presented in this paper, are found quite satisfactory to eliminate voltage sag/swell.

Keywords

DVR, Matrix Converter, Swell, THD and Voltage Sag.
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  • Voltage Sag and Swell Mitigation Using Matrix Converter with Reduced Number of Switches

Abstract Views: 174  |  PDF Views: 2

Authors

Samuel Rajesh Babu
Department of EIE, Sathyabama University, Chennai-119, India
S. Deepa
Department of EEE, Panimalar Institute of Technology, Chennai-123, India

Abstract


Dynamic Voltage Restorer (DVR) is used in power distribution system to protect sensitive loads in voltage disturbances. The performance of DVR is related to the adopted configuration and control strategy used for inverters. In this paper, matrix converter with reduced number of switches (RMC) is used to improve operation of DVR to compensate voltage sag/swell. Simulation results using MATLAB/ Simulink are presented to demonstrate the feasibility and the practicality of the proposed novel Dynamic Voltage Restorer topology. Total Harmonic Distortion (THD) is calculated. The simulation results of new DVR presented in this paper, are found quite satisfactory to eliminate voltage sag/swell.

Keywords


DVR, Matrix Converter, Swell, THD and Voltage Sag.