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project deals with modeling and simulation technique of a Dynamic Voltage Restore (DVR

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This project deals with modeling and simulation technique of a Dynamic Voltage Restore (DVR).The DVR is a dynamic solution for protection of critical loads from voltage sags / swells. The DVR restores constant load voltage and voltage wave form by injecti

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The aim of this project is to develop and improve the modeling and simulation technique of a Dynamic Voltage Restore (DVR) to protect critical loads from voltage sags and swells. The DVR is a dynamic solution that injects an appropriate voltage to restore constant load voltage and voltage wave form, ultimately improving power quality. The present novel structure has been designed to compensate for voltage sag and voltage swells, ensuring a more reliable power supply.

One of the key factors in understanding any system's behavior is its transient response, which refers to how the system responds to changes over time. Electromagnetic transient studies are crucial in analyzing the behavior of a system in the event of different forms of transient phenomena, which cannot be accurately predicted by other means.

This project seeks to address the transient studies of electrical networks that use embedded, power electronics-based FACTS and Custom Power (CP) controllers. By studying the transient response of these networks, we can gain a better understanding of how they behave and respond to changes over time. Ultimately, this will help improve the reliability and performance of power systems, ensuring a stable power supply for critical loads.