A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter Clusters

With the development of new energy, a cost-effective reactive power compensation scheme is essential to the voltage stability of the power system for small-capacity distributed generation. This paper proposes a coordinated control scheme of inverter cluster which is based on the reactive power suppo...

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Main Author: Tingzhe Pan
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:International Transactions on Electrical Energy Systems
Online Access:http://dx.doi.org/10.1155/2022/6396345
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author Tingzhe Pan
author_facet Tingzhe Pan
author_sort Tingzhe Pan
collection DOAJ
description With the development of new energy, a cost-effective reactive power compensation scheme is essential to the voltage stability of the power system for small-capacity distributed generation. This paper proposes a coordinated control scheme of inverter cluster which is based on the reactive power support capability of the photovoltaic inverter. Moreover, by using power angle vectors, a reactive power distribution algorithm is proposed to solve the poor power quality of the point of common coupling connecting source and load in the distributed generation station. Simulations verify the performance of the algorithm is better than the conventional static capacity distribute algorithm and dynamic residual margin distribute algorithm. Finally, the effectiveness of the reactive power compensation scheme and distribution strategy for improving power quality and regulation ability proposed in this paper is verified by operation experiments in the actual power station.
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spelling doaj-art-aab23b5943544d368e8e530a8829cb932025-02-03T06:08:43ZengWileyInternational Transactions on Electrical Energy Systems2050-70382022-01-01202210.1155/2022/6396345A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter ClustersTingzhe Pan0China Southern Power Grid Electric Power Research Institute Co., LtdWith the development of new energy, a cost-effective reactive power compensation scheme is essential to the voltage stability of the power system for small-capacity distributed generation. This paper proposes a coordinated control scheme of inverter cluster which is based on the reactive power support capability of the photovoltaic inverter. Moreover, by using power angle vectors, a reactive power distribution algorithm is proposed to solve the poor power quality of the point of common coupling connecting source and load in the distributed generation station. Simulations verify the performance of the algorithm is better than the conventional static capacity distribute algorithm and dynamic residual margin distribute algorithm. Finally, the effectiveness of the reactive power compensation scheme and distribution strategy for improving power quality and regulation ability proposed in this paper is verified by operation experiments in the actual power station.http://dx.doi.org/10.1155/2022/6396345
spellingShingle Tingzhe Pan
A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter Clusters
International Transactions on Electrical Energy Systems
title A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter Clusters
title_full A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter Clusters
title_fullStr A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter Clusters
title_full_unstemmed A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter Clusters
title_short A Novel Coordinated Control System to Reactive Power Compensation of Photovoltaic Inverter Clusters
title_sort novel coordinated control system to reactive power compensation of photovoltaic inverter clusters
url http://dx.doi.org/10.1155/2022/6396345
work_keys_str_mv AT tingzhepan anovelcoordinatedcontrolsystemtoreactivepowercompensationofphotovoltaicinverterclusters
AT tingzhepan novelcoordinatedcontrolsystemtoreactivepowercompensationofphotovoltaicinverterclusters