Hardware development of DSP - based shunt active filters

Power quality problems have great adverse economical impact on the utilities and customers. Current harmonics are one of the most common power quality problems which traditional passive filters are unable to resolve. Current harmonics are primarily produced when non-linear loads are connect...

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Bibliographic Details
Main Author: Su, Jingpo.
Other Authors: Agustina
Format: Final Year Project (FYP)
Language:English
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/10356/45017
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author Su, Jingpo.
author2 Agustina
author_facet Agustina
Su, Jingpo.
author_sort Su, Jingpo.
collection NTU
description Power quality problems have great adverse economical impact on the utilities and customers. Current harmonics are one of the most common power quality problems which traditional passive filters are unable to resolve. Current harmonics are primarily produced when non-linear loads are connected to point of common coupling (PCC). The adverse effect can caused forms of voltage and current distortions that damage the equipments that is connected to the same PCC or shorten the life span of supply source. Nowadays, modern active filters such as the shunt active filter are used to compensate these current harmonic problems. In this report, the background phenomena and literature review on power quality problems and solutions are discussed. The key focus of this project is the hardware design and implementation for single phase shunt active filter. Controller is also introduced to demonstrate the extraction of the fundamental and harmonic components from source current using the fast fourier transformer (FFT) theory. The controller is developed using MATLAB Simulink and tested and integrated with the hardware prototype of the shunt active filter.
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spelling ntu-10356/450172023-07-07T16:07:42Z Hardware development of DSP - based shunt active filters Su, Jingpo. Agustina School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Computer hardware, software and systems Power quality problems have great adverse economical impact on the utilities and customers. Current harmonics are one of the most common power quality problems which traditional passive filters are unable to resolve. Current harmonics are primarily produced when non-linear loads are connected to point of common coupling (PCC). The adverse effect can caused forms of voltage and current distortions that damage the equipments that is connected to the same PCC or shorten the life span of supply source. Nowadays, modern active filters such as the shunt active filter are used to compensate these current harmonic problems. In this report, the background phenomena and literature review on power quality problems and solutions are discussed. The key focus of this project is the hardware design and implementation for single phase shunt active filter. Controller is also introduced to demonstrate the extraction of the fundamental and harmonic components from source current using the fast fourier transformer (FFT) theory. The controller is developed using MATLAB Simulink and tested and integrated with the hardware prototype of the shunt active filter. Bachelor of Engineering 2011-06-08T04:08:48Z 2011-06-08T04:08:48Z 2011 2011 Final Year Project (FYP) http://hdl.handle.net/10356/45017 en Nanyang Technological University 126 p. application/pdf
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Computer hardware, software and systems
Su, Jingpo.
Hardware development of DSP - based shunt active filters
title Hardware development of DSP - based shunt active filters
title_full Hardware development of DSP - based shunt active filters
title_fullStr Hardware development of DSP - based shunt active filters
title_full_unstemmed Hardware development of DSP - based shunt active filters
title_short Hardware development of DSP - based shunt active filters
title_sort hardware development of dsp based shunt active filters
topic DRNTU::Engineering::Electrical and electronic engineering::Computer hardware, software and systems
url http://hdl.handle.net/10356/45017
work_keys_str_mv AT sujingpo hardwaredevelopmentofdspbasedshuntactivefilters