Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution network

Abstract Considering that the AC–DC hybrid microgrid (HMG) is connected to the low‐voltage distribution network (DN) where voltage faults occur most commonly, the fault ride‐through (FRT) capability and power quality performance of the HMG under abnormal DN conditions have become a critical issue. I...

Full description

Bibliographic Details
Main Authors: Yi Du, Huadong Sun, Chao Zheng
Format: Article
Language:English
Published: Wiley 2023-05-01
Series:IET Power Electronics
Subjects:
Online Access:https://doi.org/10.1049/pel2.12459
_version_ 1797825293239451648
author Yi Du
Huadong Sun
Chao Zheng
author_facet Yi Du
Huadong Sun
Chao Zheng
author_sort Yi Du
collection DOAJ
description Abstract Considering that the AC–DC hybrid microgrid (HMG) is connected to the low‐voltage distribution network (DN) where voltage faults occur most commonly, the fault ride‐through (FRT) capability and power quality performance of the HMG under abnormal DN conditions have become a critical issue. In this paper, a decentralized coordination control scheme based on an improved topology is proposed for the grid‐interactive HMG to guarantee uninterrupted and high power‐quality operation during grid faults. The method of it includes: (1) a new HMG topology is presented by adding a series transformer (ST), which is inserted between the DN and HMG; (2) an improved coordination control strategy that considers the interaction between converters of the enhanced HMG. Based on the proposed method, the operation modes of the system are introduced, and the specific design process and small‐signal model analysis of the proposed control scheme are presented. Finally, the simulated and experimental results show that the proposed method can keep both AC and DC bus voltage stable and improve the fault ride‐through capability and power quality of the HMG under abnormal DN conditions.
first_indexed 2024-03-13T10:51:54Z
format Article
id doaj.art-0fe0b31eb34145369039df2a5f5d19b5
institution Directory Open Access Journal
issn 1755-4535
1755-4543
language English
last_indexed 2024-03-13T10:51:54Z
publishDate 2023-05-01
publisher Wiley
record_format Article
series IET Power Electronics
spelling doaj.art-0fe0b31eb34145369039df2a5f5d19b52023-05-17T11:41:35ZengWileyIET Power Electronics1755-45351755-45432023-05-011671156116810.1049/pel2.12459Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution networkYi Du0Huadong Sun1Chao Zheng2College of Electrical and Information Engineering Hunan University, Changsha City Changsha Hunan Province ChinaState Key Laboratory of Power Grid Safety and Energy Conservation China Electric Power Research Institute Beijing ChinaState Key Laboratory of Power Grid Safety and Energy Conservation China Electric Power Research Institute Beijing ChinaAbstract Considering that the AC–DC hybrid microgrid (HMG) is connected to the low‐voltage distribution network (DN) where voltage faults occur most commonly, the fault ride‐through (FRT) capability and power quality performance of the HMG under abnormal DN conditions have become a critical issue. In this paper, a decentralized coordination control scheme based on an improved topology is proposed for the grid‐interactive HMG to guarantee uninterrupted and high power‐quality operation during grid faults. The method of it includes: (1) a new HMG topology is presented by adding a series transformer (ST), which is inserted between the DN and HMG; (2) an improved coordination control strategy that considers the interaction between converters of the enhanced HMG. Based on the proposed method, the operation modes of the system are introduced, and the specific design process and small‐signal model analysis of the proposed control scheme are presented. Finally, the simulated and experimental results show that the proposed method can keep both AC and DC bus voltage stable and improve the fault ride‐through capability and power quality of the HMG under abnormal DN conditions.https://doi.org/10.1049/pel2.12459AC–DC power convertorscontrol system analysiscontrollersdecentralised controlvoltage‐source convertors
spellingShingle Yi Du
Huadong Sun
Chao Zheng
Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution network
IET Power Electronics
AC–DC power convertors
control system analysis
controllers
decentralised control
voltage‐source convertors
title Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution network
title_full Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution network
title_fullStr Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution network
title_full_unstemmed Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution network
title_short Operation and coordination control scheme of an enhanced AC–DC hybrid microgrid under abnormal distribution network
title_sort operation and coordination control scheme of an enhanced ac dc hybrid microgrid under abnormal distribution network
topic AC–DC power convertors
control system analysis
controllers
decentralised control
voltage‐source convertors
url https://doi.org/10.1049/pel2.12459
work_keys_str_mv AT yidu operationandcoordinationcontrolschemeofanenhancedacdchybridmicrogridunderabnormaldistributionnetwork
AT huadongsun operationandcoordinationcontrolschemeofanenhancedacdchybridmicrogridunderabnormaldistributionnetwork
AT chaozheng operationandcoordinationcontrolschemeofanenhancedacdchybridmicrogridunderabnormaldistributionnetwork