Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method

This paper proposes the modeling and analysis of a three-phase four wire Shunt Active Power Filter (SHAF) based on real and reactive power (PQ) control method for power quality advancement in the electrical distribution system. The electrical distribution system contains loads like diode rectifiers...

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Published in:2021 International Conference in Advances in Power, Signal, and Information Technology, APSIT 2021
Main Author: Hannoon N.M.S.; Ananth D.V.N.; Hiday N.; Chowdary P.S.R.; Chakravarthy V.V.S.S.S.
Format: Conference paper
Language:English
Published: Institute of Electrical and Electronics Engineers Inc. 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85123918427&doi=10.1109%2fAPSIT52773.2021.9641343&partnerID=40&md5=baa1f6c2667bc71181eb5b9f825032db
id 2-s2.0-85123918427
spelling 2-s2.0-85123918427
Hannoon N.M.S.; Ananth D.V.N.; Hiday N.; Chowdary P.S.R.; Chakravarthy V.V.S.S.S.
Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
2021
2021 International Conference in Advances in Power, Signal, and Information Technology, APSIT 2021


10.1109/APSIT52773.2021.9641343
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85123918427&doi=10.1109%2fAPSIT52773.2021.9641343&partnerID=40&md5=baa1f6c2667bc71181eb5b9f825032db
This paper proposes the modeling and analysis of a three-phase four wire Shunt Active Power Filter (SHAF) based on real and reactive power (PQ) control method for power quality advancement in the electrical distribution system. The electrical distribution system contains loads like diode rectifiers with resistive load and non-linear resistive-inductive (RL) load respectively. The SHAF system construction consists of an isolation T / Hexagon winding transformer and three-phase IGBT H-bridges for voltage source inverters (VSI). It also has a tuned band-pass type passive filter. The main aims of this paper cover design, modeling, construction, and testing of a SHAF prototype for a three-phase four wire nonlinear and unbalanced system. For effective controlling action, an advanced Fuzzy-Granular controller is used in place of a traditional PI controller. This system is capable to mitigate voltage and current harmonics at a low power distribution system. The control method is developed for absorbing higher-order harmonics and store the same in the capacitor and revert it back to the system in the form of the fundamental waveform, thereby filtering action was done. The controllers based on the d-q-0 transformation technique and first-order transfer function model with three individual PWM controllers for three phases were applied to the SHAF. The proposed system is verified with PI, ANFIS, and Fuzzy-Granular controllers using MATLAB/ Simulink and compares the difference in performance. © 2021 IEEE.
Institute of Electrical and Electronics Engineers Inc.

English
Conference paper

author Hannoon N.M.S.; Ananth D.V.N.; Hiday N.; Chowdary P.S.R.; Chakravarthy V.V.S.S.S.
spellingShingle Hannoon N.M.S.; Ananth D.V.N.; Hiday N.; Chowdary P.S.R.; Chakravarthy V.V.S.S.S.
Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
author_facet Hannoon N.M.S.; Ananth D.V.N.; Hiday N.; Chowdary P.S.R.; Chakravarthy V.V.S.S.S.
author_sort Hannoon N.M.S.; Ananth D.V.N.; Hiday N.; Chowdary P.S.R.; Chakravarthy V.V.S.S.S.
title Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
title_short Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
title_full Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
title_fullStr Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
title_full_unstemmed Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
title_sort Power Quality Conditioning due to Flickering Loads with Shunt Active Power Filter using Fuzzy-Granular Controller Method
publishDate 2021
container_title 2021 International Conference in Advances in Power, Signal, and Information Technology, APSIT 2021
container_volume
container_issue
doi_str_mv 10.1109/APSIT52773.2021.9641343
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85123918427&doi=10.1109%2fAPSIT52773.2021.9641343&partnerID=40&md5=baa1f6c2667bc71181eb5b9f825032db
description This paper proposes the modeling and analysis of a three-phase four wire Shunt Active Power Filter (SHAF) based on real and reactive power (PQ) control method for power quality advancement in the electrical distribution system. The electrical distribution system contains loads like diode rectifiers with resistive load and non-linear resistive-inductive (RL) load respectively. The SHAF system construction consists of an isolation T / Hexagon winding transformer and three-phase IGBT H-bridges for voltage source inverters (VSI). It also has a tuned band-pass type passive filter. The main aims of this paper cover design, modeling, construction, and testing of a SHAF prototype for a three-phase four wire nonlinear and unbalanced system. For effective controlling action, an advanced Fuzzy-Granular controller is used in place of a traditional PI controller. This system is capable to mitigate voltage and current harmonics at a low power distribution system. The control method is developed for absorbing higher-order harmonics and store the same in the capacitor and revert it back to the system in the form of the fundamental waveform, thereby filtering action was done. The controllers based on the d-q-0 transformation technique and first-order transfer function model with three individual PWM controllers for three phases were applied to the SHAF. The proposed system is verified with PI, ANFIS, and Fuzzy-Granular controllers using MATLAB/ Simulink and compares the difference in performance. © 2021 IEEE.
publisher Institute of Electrical and Electronics Engineers Inc.
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language English
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