Reparation of voltage disturbance using PR controller-based DVR in Modern power systems

Author:

Danalakshmi D.1,Prathiba S.2,Ettappan M.3,Krishna D. Mohan4

Affiliation:

1. Department of Electrical and Electronics Engineering , GMR Institute of Technology , GMR Nagar, Rajam , India

2. Department of Electrical and Electronics Engineering , Chennai Loyola-ICAM College of Engineering & Technology (LICET) , Loyola Campus, Nungambakkam , Chennai - , India

3. Department of Electrical and Electronics Engineering , Chennai Institute of Technology , Chennai , Tamil Nadu , India

4. Department of Electrical and Electronics Engineering , GMR Institute of Technology , Rajam , India

Abstract

Abstract The Smart Grid environment gives more benefits for the consumers, whereas the power quality is one of the challenging factors in the smart grid environment. To protect the system equipment and increase the reliability, different filter technologies are used. Even though, consumers’ expectations towards the power quality are not fulfilled. To overcome these drawbacks and enhance the system reliability, a new Custom Power Devices (CPD) are introduced in the system. Among different CPDs, the Dynamic Voltage Restorer (DVR) is one of the voltage compensating devices that is used to improve the power quality during distortions. When the distortions such as voltage swell and sag occur in the distribution system, the control strategy in the DVR plays a significant role. In this article, the DVR performance using Proportional Integral (PI), Proportional Resonant (PR) controllers are analyzed. A robust optimization algorithm called Self Balanced Differential Evolution (SBDE) is used to find the optimal gain values of the controllers in order to reach the target of global minimum error and obtain fast response. Then, a comparative analysis is performed between different controllers and verified that the performance of PR controller is superior than the other controllers. It has been found that the proposed PR controller strategy reduces the Total Harmonic Distortion (THD) values for all types of faults. The proposed SBDE optimized DVR with PR controller reduces the THD value less than 4% under voltage distoration condition. The DVR topology is validated in MATLAB/SIMULINK in order to detect the disturbance and inject the voltage to compensate the load voltage.

Publisher

Stowarzyszenie Menedzerow Jakosci i Produkcji

Subject

Management of Technology and Innovation,Industrial and Manufacturing Engineering,Safety, Risk, Reliability and Quality,Management Information Systems

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