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Adaptive fuzzy-PI controlled dynamic voltage restorer for mitigating voltage sags
Nirmalya Mallick1, Chandan Kumar Shiva2, Sachidananda Sen2
1Electrical Engineering Department, Sanaka Educational Trust's Group of Institutions, Durgapur, India.
Abstract:
The rising integration of sensitive loads at the distribution level demands superior power quality and uninterrupted supply to prevent critical disruptions and financial losses. This study introduces a high-performance Dynamic Voltage Restorer (DVR) with an optimized control strategy to mitigate voltage sags caused by motor starting and short-circuit faults, addressing both magnitude and phase disruptions in the load voltage. A hybrid DC energy storage system, combining a supercapacitor and a proton exchange membrane fuel cell (PEMFC), is integrated through a multi-input single boost converter, governed by an intelligent energy management algorithm. This configuration ensures reliable support during both short- and long-duration voltage sags. To enhance dynamic response, a fuzzy gain-scheduled PI controller is employed, offering adaptive and robust voltage restoration. The system is validated on a low-voltage experimental setup featuring a three-phase double cage induction motor and a sensitive load. Results confirm significant improvements in voltage profile restoration and sustained system stability without over-modulation. The compensated scenario shows that the different sag indices reduce effectively, indicating near-elimination of sag severity. The proposed DVR solution demonstrates a scalable and resilient approach for modern power distribution networks facing increasing power quality challenges.
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