A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind Farms

Although various topologies of multi-terminal high voltage direct current (MT-HVdc) transmission systems are available in the literature, most of them are prone to loss of flexibility, reliability, stability, and redundancy in the events of grid contingencies. In this research, two new wind farms an...

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Main Authors: Ali Raza, Muhammad Younis, Yuchao Liu, Ali Altalbe, Kumars Rouzbehi, Ghulam Abbas
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/5/1833
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spelling doaj-0ce775df34404aa4bd6b6184f3ba7b652020-11-25T02:15:07ZengMDPI AGApplied Sciences2076-34172020-03-01105183310.3390/app10051833app10051833A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind FarmsAli Raza0Muhammad Younis1Yuchao Liu2Ali Altalbe3Kumars Rouzbehi4Ghulam Abbas5Department of Electrical Engineering, The University of Lahore, Lahore 54000, PakistanDepartment of Electrical Engineering, The University of Lahore, Lahore 54000, PakistanCollege of Automation, Harbin Engineering University, Harbin 150001, ChinaFaculty of Computing and Information Technology, King Abdulaziz University, Jeddah 21589, Saudi ArabiaDepartment of Electrical Engineering, Universidad Loyola Andalucía, 41014 Seville, SpainDepartment of Electrical Engineering, The University of Lahore, Lahore 54000, PakistanAlthough various topologies of multi-terminal high voltage direct current (MT-HVdc) transmission systems are available in the literature, most of them are prone to loss of flexibility, reliability, stability, and redundancy in the events of grid contingencies. In this research, two new wind farms and substation ring topology (2WF-SSRT) are designed and proposed to address the aforementioned shortcomings. The objective of this paper is to investigate MT-HVdc grid topologies for integrating large offshore wind farms with an emphasis on power loss in the event of a dc grid fault or mainland alternating current (ac)grid abnormality. Standards and control of voltage source converter (VSC) based MT-HVdc grids are defined and discussed. High voltage dc switch-gear and dc circuit topologies are appraised based on the necessity of dc cables, HVdc circuit breakers, and extra offshore platforms. In this paper, the proposed topology is analyzed and compared with the formers for number and ratings of offshore substations, dc breakers, ultra-fast mechanical actuators, dc circuits, cost, flexibility, utilization, and redundancy of HVdc links. Coordinated operation of various topologies is assessed and compared with respect to the designed control scheme via a developed EMTDC/PSCAD simulation platform considering three fault scenarios: dc fault on transmission link connecting the wind farm to mainland power converters, dc fault within substation ring of VSC-HVdc stations, and ultimate disconnection of grid side VSC station. Results show that 2WF-SSRT is a promising topology for future MT-HVdc grids.https://www.mdpi.com/2076-3417/10/5/1833hvdc transmission systemsmt-hvdc grid topologies for offshore wind farms2wf-ssrt topologycomparison of mt-hvdc grid topologies
collection DOAJ
language English
format Article
sources DOAJ
author Ali Raza
Muhammad Younis
Yuchao Liu
Ali Altalbe
Kumars Rouzbehi
Ghulam Abbas
spellingShingle Ali Raza
Muhammad Younis
Yuchao Liu
Ali Altalbe
Kumars Rouzbehi
Ghulam Abbas
A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind Farms
Applied Sciences
hvdc transmission systems
mt-hvdc grid topologies for offshore wind farms
2wf-ssrt topology
comparison of mt-hvdc grid topologies
author_facet Ali Raza
Muhammad Younis
Yuchao Liu
Ali Altalbe
Kumars Rouzbehi
Ghulam Abbas
author_sort Ali Raza
title A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind Farms
title_short A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind Farms
title_full A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind Farms
title_fullStr A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind Farms
title_full_unstemmed A Multi-Terminal HVdc Grid Topology Proposal for Offshore Wind Farms
title_sort multi-terminal hvdc grid topology proposal for offshore wind farms
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-03-01
description Although various topologies of multi-terminal high voltage direct current (MT-HVdc) transmission systems are available in the literature, most of them are prone to loss of flexibility, reliability, stability, and redundancy in the events of grid contingencies. In this research, two new wind farms and substation ring topology (2WF-SSRT) are designed and proposed to address the aforementioned shortcomings. The objective of this paper is to investigate MT-HVdc grid topologies for integrating large offshore wind farms with an emphasis on power loss in the event of a dc grid fault or mainland alternating current (ac)grid abnormality. Standards and control of voltage source converter (VSC) based MT-HVdc grids are defined and discussed. High voltage dc switch-gear and dc circuit topologies are appraised based on the necessity of dc cables, HVdc circuit breakers, and extra offshore platforms. In this paper, the proposed topology is analyzed and compared with the formers for number and ratings of offshore substations, dc breakers, ultra-fast mechanical actuators, dc circuits, cost, flexibility, utilization, and redundancy of HVdc links. Coordinated operation of various topologies is assessed and compared with respect to the designed control scheme via a developed EMTDC/PSCAD simulation platform considering three fault scenarios: dc fault on transmission link connecting the wind farm to mainland power converters, dc fault within substation ring of VSC-HVdc stations, and ultimate disconnection of grid side VSC station. Results show that 2WF-SSRT is a promising topology for future MT-HVdc grids.
topic hvdc transmission systems
mt-hvdc grid topologies for offshore wind farms
2wf-ssrt topology
comparison of mt-hvdc grid topologies
url https://www.mdpi.com/2076-3417/10/5/1833
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