DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control

A new control technique known as inverted error deviation (IED) control is incorporated into the main DC-link capacitor voltage regulation algorithm of a three-level neutral-point diode clamped (NPC) inverter-based shunt active power filter (SAPF) to enhance its performance in overall DC-link voltag...

Full description

Bibliographic Details
Main Authors: Yap, Hoon, Mohd Radzi, Mohd Amran, Hassan, Mohd Khair, Mailah, Nashiren Farzilah
Format: Article
Language:English
Published: MDPI 2016
Online Access:http://psasir.upm.edu.my/id/eprint/55424/
http://psasir.upm.edu.my/id/eprint/55424/1/DC-Link%20Capacitor%20Voltage%20Regulation%20for.pdf
_version_ 1848852798652809216
author Yap, Hoon
Mohd Radzi, Mohd Amran
Hassan, Mohd Khair
Mailah, Nashiren Farzilah
author_facet Yap, Hoon
Mohd Radzi, Mohd Amran
Hassan, Mohd Khair
Mailah, Nashiren Farzilah
author_sort Yap, Hoon
building UPM Institutional Repository
collection Online Access
description A new control technique known as inverted error deviation (IED) control is incorporated into the main DC-link capacitor voltage regulation algorithm of a three-level neutral-point diode clamped (NPC) inverter-based shunt active power filter (SAPF) to enhance its performance in overall DC-link voltage regulation so as to improve its harmonics mitigation performances. In the SAPF controller, DC-link capacitor voltage regulation algorithms with either the proportional-integral (PI) or fuzzy logic control (FLC) technique have played a significant role in maintaining a constant DC-link voltage across the DC-link capacitors. However, both techniques are mostly operated based on a direct voltage error manipulation approach which is insufficient to address the severe DC-link voltage deviation that occurs during dynamic-state conditions. As a result, the conventional algorithms perform poorly with large overshoot, undershoot, and slow response time. Therefore, the IED control technique is proposed to precisely address the DC-link voltage deviation. To validate effectiveness and feasibility of the proposed algorithm, simulation work in MATLAB-Simulink and experimental implementation utilizing a TMS320F28335 Digital Signal Processor (DSP) are performed. Moreover, conventional algorithms with PI and FLC techniques are tested too for comparison purposes. Both simulation and experimental results are presented, confirming the improvement achieved by the proposed algorithm in terms of accuracy and dynamic response in comparison to the conventional algorithms.
first_indexed 2025-11-15T10:43:48Z
format Article
id upm-55424
institution Universiti Putra Malaysia
institution_category Local University
language English
last_indexed 2025-11-15T10:43:48Z
publishDate 2016
publisher MDPI
recordtype eprints
repository_type Digital Repository
spelling upm-554242017-09-15T09:49:08Z http://psasir.upm.edu.my/id/eprint/55424/ DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control Yap, Hoon Mohd Radzi, Mohd Amran Hassan, Mohd Khair Mailah, Nashiren Farzilah A new control technique known as inverted error deviation (IED) control is incorporated into the main DC-link capacitor voltage regulation algorithm of a three-level neutral-point diode clamped (NPC) inverter-based shunt active power filter (SAPF) to enhance its performance in overall DC-link voltage regulation so as to improve its harmonics mitigation performances. In the SAPF controller, DC-link capacitor voltage regulation algorithms with either the proportional-integral (PI) or fuzzy logic control (FLC) technique have played a significant role in maintaining a constant DC-link voltage across the DC-link capacitors. However, both techniques are mostly operated based on a direct voltage error manipulation approach which is insufficient to address the severe DC-link voltage deviation that occurs during dynamic-state conditions. As a result, the conventional algorithms perform poorly with large overshoot, undershoot, and slow response time. Therefore, the IED control technique is proposed to precisely address the DC-link voltage deviation. To validate effectiveness and feasibility of the proposed algorithm, simulation work in MATLAB-Simulink and experimental implementation utilizing a TMS320F28335 Digital Signal Processor (DSP) are performed. Moreover, conventional algorithms with PI and FLC techniques are tested too for comparison purposes. Both simulation and experimental results are presented, confirming the improvement achieved by the proposed algorithm in terms of accuracy and dynamic response in comparison to the conventional algorithms. MDPI 2016 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/55424/1/DC-Link%20Capacitor%20Voltage%20Regulation%20for.pdf Yap, Hoon and Mohd Radzi, Mohd Amran and Hassan, Mohd Khair and Mailah, Nashiren Farzilah (2016) DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control. Energies, 9 (7). pp. 1-25. ISSN 1996-1073 http://www.mdpi.com/1996-1073/9/7/533 10.3390/en9070533
spellingShingle Yap, Hoon
Mohd Radzi, Mohd Amran
Hassan, Mohd Khair
Mailah, Nashiren Farzilah
DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control
title DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control
title_full DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control
title_fullStr DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control
title_full_unstemmed DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control
title_short DC-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control
title_sort dc-link capacitor voltage regulation for three-phase three-level inverter-based shunt active power filter with inverted error deviation control
url http://psasir.upm.edu.my/id/eprint/55424/
http://psasir.upm.edu.my/id/eprint/55424/
http://psasir.upm.edu.my/id/eprint/55424/
http://psasir.upm.edu.my/id/eprint/55424/1/DC-Link%20Capacitor%20Voltage%20Regulation%20for.pdf