Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open Points

This paper proposes a coordinated voltage regulation method for active distribution networks (ADNs) to mitigate nodal voltage fluctuations caused by photovoltaic (PV) power fluctuations, where a three-stage optimization scheme is developed to coordinate and optimize the tap position of on-load tap c...

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Main Authors: Ruonan Hu, Wei Wang, Zhe Chen, Xuezhi Wu, Long Jing, Wei Ma, Guohong Zeng
Format: Article
Language:English
Published: MDPI AG 2020-11-01
Series:Sustainability
Subjects:
Online Access:https://www.mdpi.com/2071-1050/12/22/9453
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spelling doaj-a8c3043efeaa4f3e9e4c59932a2256ff2020-11-25T04:07:00ZengMDPI AGSustainability2071-10502020-11-01129453945310.3390/su12229453Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open PointsRuonan Hu0Wei Wang1Zhe Chen2Xuezhi Wu3Long Jing4Wei Ma5Guohong Zeng6National Active Distribution Network Technology Research Center, Beijing Jiaotong University, Beijing 100044, ChinaNational Active Distribution Network Technology Research Center, Beijing Jiaotong University, Beijing 100044, ChinaDepartment of Energy Technology, Aalborg University, 9220 Aalborg, DenmarkNational Active Distribution Network Technology Research Center, Beijing Jiaotong University, Beijing 100044, ChinaNational Active Distribution Network Technology Research Center, Beijing Jiaotong University, Beijing 100044, ChinaNational Active Distribution Network Technology Research Center, Beijing Jiaotong University, Beijing 100044, ChinaNational Active Distribution Network Technology Research Center, Beijing Jiaotong University, Beijing 100044, ChinaThis paper proposes a coordinated voltage regulation method for active distribution networks (ADNs) to mitigate nodal voltage fluctuations caused by photovoltaic (PV) power fluctuations, where a three-stage optimization scheme is developed to coordinate and optimize the tap position of on-load tap changers (OLTCs), the reactive power of capacitor banks (CBs), and the active and reactive power of soft open points (SOPs). The first stage aims to schedule the OLTC and CBs hourly using the rolling optimization algorithm. In the second stage, a multi-objective optimization model of SOPs is established to periodically (15 min) optimize the active and reactive power of each SOP. Meanwhile, this model is also responsible for optimizing the Q-V droop control parameters of each SOP used in the third stage. The aim of the third stage is to suppress real-time (1 min) voltage fluctuations caused by rapid changes in PV power, where the Q-V droop control is developed to regulate the actual reactive power of SOPs automatically, according to the measured voltage at the SOPs’ connection points. Furthermore, numerous simulations and comparisons are carried out on a modified IEEE 33-bus distribution network to verify the effectiveness and correctness of the proposed voltage regulation method.https://www.mdpi.com/2071-1050/12/22/9453active distribution network (ADN)voltage regulationphotovoltaic (PV)soft open point (SOP)droop control
collection DOAJ
language English
format Article
sources DOAJ
author Ruonan Hu
Wei Wang
Zhe Chen
Xuezhi Wu
Long Jing
Wei Ma
Guohong Zeng
spellingShingle Ruonan Hu
Wei Wang
Zhe Chen
Xuezhi Wu
Long Jing
Wei Ma
Guohong Zeng
Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open Points
Sustainability
active distribution network (ADN)
voltage regulation
photovoltaic (PV)
soft open point (SOP)
droop control
author_facet Ruonan Hu
Wei Wang
Zhe Chen
Xuezhi Wu
Long Jing
Wei Ma
Guohong Zeng
author_sort Ruonan Hu
title Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open Points
title_short Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open Points
title_full Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open Points
title_fullStr Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open Points
title_full_unstemmed Coordinated Voltage Regulation Methods in Active Distribution Networks with Soft Open Points
title_sort coordinated voltage regulation methods in active distribution networks with soft open points
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2020-11-01
description This paper proposes a coordinated voltage regulation method for active distribution networks (ADNs) to mitigate nodal voltage fluctuations caused by photovoltaic (PV) power fluctuations, where a three-stage optimization scheme is developed to coordinate and optimize the tap position of on-load tap changers (OLTCs), the reactive power of capacitor banks (CBs), and the active and reactive power of soft open points (SOPs). The first stage aims to schedule the OLTC and CBs hourly using the rolling optimization algorithm. In the second stage, a multi-objective optimization model of SOPs is established to periodically (15 min) optimize the active and reactive power of each SOP. Meanwhile, this model is also responsible for optimizing the Q-V droop control parameters of each SOP used in the third stage. The aim of the third stage is to suppress real-time (1 min) voltage fluctuations caused by rapid changes in PV power, where the Q-V droop control is developed to regulate the actual reactive power of SOPs automatically, according to the measured voltage at the SOPs’ connection points. Furthermore, numerous simulations and comparisons are carried out on a modified IEEE 33-bus distribution network to verify the effectiveness and correctness of the proposed voltage regulation method.
topic active distribution network (ADN)
voltage regulation
photovoltaic (PV)
soft open point (SOP)
droop control
url https://www.mdpi.com/2071-1050/12/22/9453
work_keys_str_mv AT ruonanhu coordinatedvoltageregulationmethodsinactivedistributionnetworkswithsoftopenpoints
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AT xuezhiwu coordinatedvoltageregulationmethodsinactivedistributionnetworkswithsoftopenpoints
AT longjing coordinatedvoltageregulationmethodsinactivedistributionnetworkswithsoftopenpoints
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