Derating active power filters considering network and bus voltage total harmonic distortions

The most practiced and acceptable approach to improve the power quality of distorted distribution networks is to install active power filters (APFs) at the point of common couplings (PCCs) of nonlinear loads. This approach has proven to be very effective since APFs fully compensate for the injected...

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Main Authors: Deilami, Sara, Masoum, Mohammad Sherkat, Moghbel, Moayed
Format: Conference Paper
Published: 2016
Online Access:http://hdl.handle.net/20.500.11937/50669
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author Deilami, Sara
Masoum, Mohammad Sherkat
Moghbel, Moayed
author_facet Deilami, Sara
Masoum, Mohammad Sherkat
Moghbel, Moayed
author_sort Deilami, Sara
building Curtin Institutional Repository
collection Online Access
description The most practiced and acceptable approach to improve the power quality of distorted distribution networks is to install active power filters (APFs) at the point of common couplings (PCCs) of nonlinear loads. This approach has proven to be very effective since APFs fully compensate for the injected current harmonics at the PCCs that will effectively result in negligible voltage total harmonic distortion (THDv) of the entire network. The main drawback of APFs is that they are relatively expensive and not feasible for small facilities. This paper proposes a simple and practical approach for reducing the cost of APFs by derating them under the worst operating condition. The idea is instead of designing APFs to completely eliminate the injected current harmonics at their PCCs, reduce their ratings such that the overall network THDv is within permissible limit recommended by the power quality standards. Simulation results are presented and compared for the distorted IEEE 31 bus 23kV network without and with APFs considering different levels of filter deratings.
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institution Curtin University Malaysia
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publishDate 2016
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spelling curtin-20.500.11937-506692017-09-13T15:37:22Z Derating active power filters considering network and bus voltage total harmonic distortions Deilami, Sara Masoum, Mohammad Sherkat Moghbel, Moayed The most practiced and acceptable approach to improve the power quality of distorted distribution networks is to install active power filters (APFs) at the point of common couplings (PCCs) of nonlinear loads. This approach has proven to be very effective since APFs fully compensate for the injected current harmonics at the PCCs that will effectively result in negligible voltage total harmonic distortion (THDv) of the entire network. The main drawback of APFs is that they are relatively expensive and not feasible for small facilities. This paper proposes a simple and practical approach for reducing the cost of APFs by derating them under the worst operating condition. The idea is instead of designing APFs to completely eliminate the injected current harmonics at their PCCs, reduce their ratings such that the overall network THDv is within permissible limit recommended by the power quality standards. Simulation results are presented and compared for the distorted IEEE 31 bus 23kV network without and with APFs considering different levels of filter deratings. 2016 Conference Paper http://hdl.handle.net/20.500.11937/50669 10.1109/EEEIC.2016.7555858 restricted
spellingShingle Deilami, Sara
Masoum, Mohammad Sherkat
Moghbel, Moayed
Derating active power filters considering network and bus voltage total harmonic distortions
title Derating active power filters considering network and bus voltage total harmonic distortions
title_full Derating active power filters considering network and bus voltage total harmonic distortions
title_fullStr Derating active power filters considering network and bus voltage total harmonic distortions
title_full_unstemmed Derating active power filters considering network and bus voltage total harmonic distortions
title_short Derating active power filters considering network and bus voltage total harmonic distortions
title_sort derating active power filters considering network and bus voltage total harmonic distortions
url http://hdl.handle.net/20.500.11937/50669