Open Access
Research Paper
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Paper Title

HARDWARE IMPLEMENTATION OF DYNAMIC VOLTAGE RESTORER TO REDUCE VOLTAGE SAG/SWELL

Article Identifiers

Registration ID: IJNRD_226532

Published ID: IJNRD2408169

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Keywords

Static Series Compensator (SSC), Dynamic Voltage Restorer (DVR).

Abstract

The most frequent problems with Power Quality in distribution networks are voltage sag disturbances. The main purpose of a dynamic voltage restorer is to lessen voltage sag. In comparison with commonly used compensators, the proposed technique employs fewer switching devices and has better compensatory capabilities. The Dynamic Voltage Restorer (DVR), often referred to as the Static Series Compensator (SSC), is the best device for shielding delicate loads from unexpected supply interruptions. In order to mitigate voltage sag, this project provides the hardware implementation of a single phase dynamic voltage restorer. The distribution feeder and DVR are connected in series at medium voltages. For medium voltage levels, DVR provides an affordable way to safeguard delicate loads. A DVR might not be as economical for low voltage applications as an uninterruptible power supply. Voltage sags can be remedied by injecting power and voltage into the distribution system. To prevent voltage decreases, the DVR has the capacity to generate and absorb both reactive and active power.

How To Cite (APA)

TUSHAL SHARMA & Dr. Geena Sharma (August-2024). HARDWARE IMPLEMENTATION OF DYNAMIC VOLTAGE RESTORER TO REDUCE VOLTAGE SAG/SWELL. INTERNATIONAL JOURNAL OF NOVEL RESEARCH AND DEVELOPMENT, 9(8), b762-b766. https://ijnrd.org/papers/IJNRD2408169.pdf

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Other Publication Details

Paper Reg. ID: IJNRD_226532

Published Paper Id: IJNRD2408169

Downloads: 000122253

Research Area: Electrical Engineering 

Author Type: Indian Author

Country: HAMIRPUR (H.P.), HIMACHAL PRADESH, India

Published Paper PDF: https://ijnrd.org/papers/IJNRD2408169.pdf

Published Paper URL: https://ijnrd.org/viewpaperforall?paper=IJNRD2408169

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Call For Paper - Volume 10 | Issue 12 | December 2025

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Current Issue: Volume 10 | Issue 12 | December 2025

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