Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids

This paper deals with development of a versatile and compact control strategy for voltage source converters in grid-connected and islanded microgrids using synchronous current converters technology. The key feature is its new integrated high-order controller/synchronizer with applicability to both o...

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Main Authors: Ashabani, Mahdi, Gooi, Hoay Beng, Guerrero, Josep M.
Other Authors: School of Electrical and Electronic Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/143709
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1437092020-09-18T01:41:57Z Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids Ashabani, Mahdi Gooi, Hoay Beng Guerrero, Josep M. School of Electrical and Electronic Engineering Engineering::Electrical and electronic engineering Microgrid Distributed Generation This paper deals with development of a versatile and compact control strategy for voltage source converters in grid-connected and islanded microgrids using synchronous current converters technology. The key feature is its new integrated high-order controller/synchronizer with applicability to both operational modes without strategy rearrangement. Using high-order controllers, on the other hand, results in rather complex analysis and design process, therefore this paper aims at providing a general and simple theme for the design and parameter selection. The controller also provides adaptive and automated current-based grid synchronization. Moreover, the controller realizes a power-source current-controlled microgrid with minimum control loops, as compared to widely adopted voltage controlled microgrids in the literature, with advantages such as fault-ride-through and inherent droop-less power sharing capabilities. Adaptive current-based synchronization and smooth switching to islanding mode provides high flexibility, reliability and only-plug operation capability. Extensive simulation and experimental results are presented to demonstrate performance of the proposed control and management strategy. 2020-09-18T01:41:57Z 2020-09-18T01:41:57Z 2018 Journal Article Ashabani, M., Gooi, H. B., & Guerrero, J. M. (2018). Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids. Applied Energy, 219, 370–384. doi:10.1016/j.apenergy.2017.09.053. 0306-2619 https://hdl.handle.net/10356/143709 10.1016/j.apenergy.2017.09.053 219 370 384 en Applied Energy © 2017 Elsevier. All rights reserved.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
Microgrid
Distributed Generation
spellingShingle Engineering::Electrical and electronic engineering
Microgrid
Distributed Generation
Ashabani, Mahdi
Gooi, Hoay Beng
Guerrero, Josep M.
Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids
description This paper deals with development of a versatile and compact control strategy for voltage source converters in grid-connected and islanded microgrids using synchronous current converters technology. The key feature is its new integrated high-order controller/synchronizer with applicability to both operational modes without strategy rearrangement. Using high-order controllers, on the other hand, results in rather complex analysis and design process, therefore this paper aims at providing a general and simple theme for the design and parameter selection. The controller also provides adaptive and automated current-based grid synchronization. Moreover, the controller realizes a power-source current-controlled microgrid with minimum control loops, as compared to widely adopted voltage controlled microgrids in the literature, with advantages such as fault-ride-through and inherent droop-less power sharing capabilities. Adaptive current-based synchronization and smooth switching to islanding mode provides high flexibility, reliability and only-plug operation capability. Extensive simulation and experimental results are presented to demonstrate performance of the proposed control and management strategy.
author2 School of Electrical and Electronic Engineering
author_facet School of Electrical and Electronic Engineering
Ashabani, Mahdi
Gooi, Hoay Beng
Guerrero, Josep M.
format Article
author Ashabani, Mahdi
Gooi, Hoay Beng
Guerrero, Josep M.
author_sort Ashabani, Mahdi
title Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids
title_short Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids
title_full Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids
title_fullStr Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids
title_full_unstemmed Designing high-order power-source synchronous current converters for islanded and grid-connected microgrids
title_sort designing high-order power-source synchronous current converters for islanded and grid-connected microgrids
publishDate 2020
url https://hdl.handle.net/10356/143709
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