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Autores principales: Ghimire, Sulav, Kkuni, Kanakesh V, Jakobsen, Simon C, Knueppel, Thyge, Jensen, Kim H, Guest, Emerson, Rasmussen, Tonny W, Yang, Guangya
Formato: Preprint
Publicado: 2023
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Acceso en línea:https://arxiv.org/abs/2310.01826
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author Ghimire, Sulav
Kkuni, Kanakesh V
Jakobsen, Simon C
Knueppel, Thyge
Jensen, Kim H
Guest, Emerson
Rasmussen, Tonny W
Yang, Guangya
author_facet Ghimire, Sulav
Kkuni, Kanakesh V
Jakobsen, Simon C
Knueppel, Thyge
Jensen, Kim H
Guest, Emerson
Rasmussen, Tonny W
Yang, Guangya
contents Grid-forming control (GFC) has seen numerous technological advances in their control types, applications, and the multitude of services they provide. Some examples of the services they provide include black start, inertial frequency response, and islanded operation capabilities with the possibility of re-synchronization without the need of additional support from other devices such as storage. State of the art literature proposes a variety of GFCs which can provide single or multiple of these services. However, study of these different GFCs for weakly-connected offshore wind power plants (WPPs) based on time-domain simulation and focusing on the large signal disturbance is not well covered. This paper reviews some of the most researched grid-forming control methods applicable to offshore WPPs and provides a comparative investigation and discussion of their stability properties and applicability, especially when connected to a weak-grid. The paper also provides a discussion on the prerequisites and challenges surrounding the comparative study of different GFCs.
format Preprint
id arxiv_https___arxiv_org_abs_2310_01826
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Grid-Forming Control Methods for Weakly Connected Offshore WPPs
Ghimire, Sulav
Kkuni, Kanakesh V
Jakobsen, Simon C
Knueppel, Thyge
Jensen, Kim H
Guest, Emerson
Rasmussen, Tonny W
Yang, Guangya
Systems and Control
Grid-forming control (GFC) has seen numerous technological advances in their control types, applications, and the multitude of services they provide. Some examples of the services they provide include black start, inertial frequency response, and islanded operation capabilities with the possibility of re-synchronization without the need of additional support from other devices such as storage. State of the art literature proposes a variety of GFCs which can provide single or multiple of these services. However, study of these different GFCs for weakly-connected offshore wind power plants (WPPs) based on time-domain simulation and focusing on the large signal disturbance is not well covered. This paper reviews some of the most researched grid-forming control methods applicable to offshore WPPs and provides a comparative investigation and discussion of their stability properties and applicability, especially when connected to a weak-grid. The paper also provides a discussion on the prerequisites and challenges surrounding the comparative study of different GFCs.
title Grid-Forming Control Methods for Weakly Connected Offshore WPPs
topic Systems and Control
url https://arxiv.org/abs/2310.01826