
Research Article
Dynamic Voltage Restorer to Mitigate Voltage Sag/Swell using Black Widow Optimization Technique with FOPID Controller
@ARTICLE{10.4108/ew.4331, author={B. Srikanth Goud and M. Kiran Kumar and Narisetti Ashok Kumar and CH. Naga Sai Kalyan and Mohit Bajaj and Subhashree Choudhury and Swati Shukla}, title={Dynamic Voltage Restorer to Mitigate Voltage Sag/Swell using Black Widow Optimization Technique with FOPID Controller}, journal={EAI Endorsed Transactions on Energy Web}, volume={10}, number={1}, publisher={EAI}, journal_a={EW}, year={2023}, month={11}, keywords={DVR, BWO technique, FOPID controller}, doi={10.4108/ew.4331} }
- B. Srikanth Goud
M. Kiran Kumar
Narisetti Ashok Kumar
CH. Naga Sai Kalyan
Mohit Bajaj
Subhashree Choudhury
Swati Shukla
Year: 2023
Dynamic Voltage Restorer to Mitigate Voltage Sag/Swell using Black Widow Optimization Technique with FOPID Controller
EW
EAI
DOI: 10.4108/ew.4331
Abstract
The efficiency with which electrical equipment use electricity is essential for several reasons. First, superior power quality (PQ) improves efficiency and facilitates peak performance in electronic equipment. This article's goal is to make the advantages of installing a Dynamic Voltage Restorer (DVR) to enhance PQ for energy users clearer. To improve DVR dependability and user friendliness, the suggested technique uses a hysteresis voltage control system that works with variable switching frequency. Simulation findings show that voltage compensation is successful under disturbances when a black widow optimization (BWO) based Factional order proportional derivative (FOPID) controller is used. This paper proposed is to improve PQ using a BWO- FOPID controller and compare the outcomes to those achieved from a previously developed PI controller in a distribution power system using MATLAB.
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