IJFANS International Journal of Food and Nutritional Sciences

ISSN PRINT 2319 1775 Online 2320-7876

Experimental Study of Fuzzy-SVPWM-Based Indirect Current Controlled Shunt Hybrid Active Power Filter

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Somlal Jarupula
» doi: 10.48047/ijfans/v10/i3/23

Abstract

Abstract: In order to reduce harmonics and reactive power, the Shunt Hybrid Active Power Filter (SHAPF) is experimentally investigated in this study. A fuzzy logic controller (FLC) is used in the current work to generate the necessary harmonic reference currents and control the SHAPF's DC side voltage. Space Vector Pulse Width Modulation (SVPWM) is utilised to provide the necessary pulses needed for the Voltage Source Converter (VSC) in the shunt Active Power Filter (APF) in order to effectively use the DC side voltage. The suggested control mechanism has been subjected to experimental study to evaluate it. The Spartan 6 Field-Programmable Gate Array (FPGA) controller is used to implement the SHAPF's control algorithm in the digital realm. Careful selection and setup of SHAPF components are necessary to meet the core requirements for the application structure. The equipment This document presents the SHAPF component designs. The experiments conducted in this study using a 150V/1.5kVA experimental setup demonstrate the feasibility of SHAPF.

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