2011Unpublished venueRequires access

Mitigation of voltage sags and voltage swells by dynamic voltage restorer

D. Rajasekaran, S. SekharDash, P. Vignesh

Open publisher page 14 citations

Abstract

Modern industrial processes are based on a large amount of electronic devices such as programmable logic controllers and adjustable speed drives. Unfortunately, electronic devices are sensitive to disturbances, and thus, industrial loads become less tolerant to power quality problems such as voltage sags, voltage swells, and harmonics. The dynamic voltage restorer (DVR) has become popular as a cost effective solution for the protection of sensitive loads from voltage sags and swells. This paper deals with modeling and simulation of a Dynamic Voltage Restore (DVR) for mitigation of voltage sags and voltage swells. The control of the compensation voltages in DVR based on d-q-0 algorithm is discussed. Effectiveness of proposed technique is investigated through computer simulation by using MATLAB/SIMULNK software.

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What this paper is about

Modern industrial processes are based on a large amount of electronic devices such as programmable logic controllers and adjustable speed drives. Unfortunately, electronic devices are sensitive to disturbances, and thus, industrial loads become less tolerant to power quality problems such as voltage sags, voltage swells, and harmonics. The dynamic voltage restorer (DVR) has become popular as a cost effective solution for the protection of sensitive loads from voltage sags and swells. This paper deals with modeling and simulation of a Dynamic Voltage Restore (DVR) for mitigation of voltage sags and voltage swells. The control of the compensation voltages in DVR based on d-q-0 algorithm is discussed. Effectiveness of proposed technique is investigated through computer simulation by using MATLAB/SIMULNK software.

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OpenAlex reports 14 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Modern industrial processes are based on a large amount of electronic devices such as programmable logic controllers and adjustable speed drives. Unfortunately, electronic devices are sensitive to disturbances, and thus, industrial loads become less tolerant to power quality problems such as voltage sags, voltage swells, and harmonics. The dynamic voltage restorer (DVR) has become popular as a cost effective solution for the protection of sensitive loads from voltage sags and swells. This paper deals with modeling and simulation of a Dynamic Voltage Restore (DVR) for mitigation of voltage sags and voltage swells. The control of the compensation voltages in DVR based on d-q-0 algorithm is discussed. Effectiveness of proposed technique is investigated through computer simulation by using MATLAB/SIMULNK software.

Key concepts: Voltage sag, Swell, Voltage, Harmonics, Voltage optimisation, Voltage regulation, MATLAB, Compensation (psychology)

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