Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency Modulation

The introduction of electrolytic aluminum load in a large-scale power system with complex power station structure is essential for load frequency control (LFC). In this paper, we propose a control strategy for electrolytic aluminum load to participate in the frequency modulation of the power grid ba...

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Main Authors: Xin Shen, Hongchun Shu, Zhengyun Fan, Xi Mo
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9395068/
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author Xin Shen
Hongchun Shu
Zhengyun Fan
Xi Mo
author_facet Xin Shen
Hongchun Shu
Zhengyun Fan
Xi Mo
author_sort Xin Shen
collection DOAJ
description The introduction of electrolytic aluminum load in a large-scale power system with complex power station structure is essential for load frequency control (LFC). In this paper, we propose a control strategy for electrolytic aluminum load to participate in the frequency modulation of the power grid based on the IEEE standard two-region LFC model. Besides, a fractional-order PID (FOPID) controller is designed and compared with traditional PID, and the parameters of the FOPID controller are optimized by PSO algorithm. In addition, a two-region LFC model was built to verify the integrated control strategy for electrolytic aluminum load participation in frequency modulation, which show that the FOPID controller optimized by the PSO algorithm has stronger robustness in the LFC.
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spelling doaj.art-20879748a5f04307a68eff38eac8b6392022-12-21T19:53:01ZengIEEEIEEE Access2169-35362021-01-019569555696410.1109/ACCESS.2021.30708649395068Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency ModulationXin Shen0https://orcid.org/0000-0001-7191-4705Hongchun Shu1Zhengyun Fan2Xi Mo3Faculty of Electric Power Engineering, Kunming University of Science and Technology, Kunming, ChinaFaculty of Electric Power Engineering, Kunming University of Science and Technology, Kunming, ChinaYunnan Power Grid Company Ltd., Kunming, ChinaYunnan Electric Power Dispatching and Control Center, Kunming, ChinaThe introduction of electrolytic aluminum load in a large-scale power system with complex power station structure is essential for load frequency control (LFC). In this paper, we propose a control strategy for electrolytic aluminum load to participate in the frequency modulation of the power grid based on the IEEE standard two-region LFC model. Besides, a fractional-order PID (FOPID) controller is designed and compared with traditional PID, and the parameters of the FOPID controller are optimized by PSO algorithm. In addition, a two-region LFC model was built to verify the integrated control strategy for electrolytic aluminum load participation in frequency modulation, which show that the FOPID controller optimized by the PSO algorithm has stronger robustness in the LFC.https://ieeexplore.ieee.org/document/9395068/Electrolytic aluminumLFCFOPIDintegrated control strategy
spellingShingle Xin Shen
Hongchun Shu
Zhengyun Fan
Xi Mo
Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency Modulation
IEEE Access
Electrolytic aluminum
LFC
FOPID
integrated control strategy
title Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency Modulation
title_full Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency Modulation
title_fullStr Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency Modulation
title_full_unstemmed Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency Modulation
title_short Integrated Control Strategy for Electrolytic Aluminum Load Participation in Frequency Modulation
title_sort integrated control strategy for electrolytic aluminum load participation in frequency modulation
topic Electrolytic aluminum
LFC
FOPID
integrated control strategy
url https://ieeexplore.ieee.org/document/9395068/
work_keys_str_mv AT xinshen integratedcontrolstrategyforelectrolyticaluminumloadparticipationinfrequencymodulation
AT hongchunshu integratedcontrolstrategyforelectrolyticaluminumloadparticipationinfrequencymodulation
AT zhengyunfan integratedcontrolstrategyforelectrolyticaluminumloadparticipationinfrequencymodulation
AT ximo integratedcontrolstrategyforelectrolyticaluminumloadparticipationinfrequencymodulation