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Control Strategies for Shunt Active Power Filters in Total Harmonic Distortion Reduction: A Comprehensive Review

P. Vasudeva Naidu, B. Prasad, Dr. Sura Srinivasa Rao, GVSSN Srirama Sharma

Abstract


This paperwork presents a single-phase shunt active power filter to reduce total harmonic distortion.
Harmonic pollution in the power system has increased significantly because of the widespread usage of nonlinear
single phase power electronic equipment on the low voltage side. For electrical engineers, improving power
quality has emerged as their greatest obstacle. A single-phase shunt active power filter was constructed in
MATLAB/SIMULINK using a voltage supply inverter and a hysteresis current regulator. The performance of a
single-phase shunt active power filter in the presence of a nonlinear load is demonstrated by the simulation results
that are presented. Many problems, including low power factor, excessive neutral current, feeder voltage
distortion, transformer heating up, destruction to power gadgets, and malfunctioning of sensitive equipment, are
caused by reactive power and harmonics. To remove harmonics from the power supply, PCC installs active power
filters (APF).


Keywords


THD - Total Harmonic Distortion, PCC - Point of Common Coupling, SHAPF - Shunt Active Power Filter, VSI - Voltage Source Inverter, SPAPF – Shunt Phase Active Power Filter, APF- Active power filter, HCC- Hysteresis Current Control

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DOI: https://doi.org/10.37591/rtecs.v10i2.7746

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