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Abstract
The Faroe Islands are aiming for 100% renewable electricity generation. The complexity of operational power systems with a high level of renewable generation necessitates accurate dynamic models. Many power systems, including the Faroe Islands, do however consist of generation units with old governors and automatic voltage regulators, in which suitable models and parameters are unknown. Obtaining dynamic models with parameters that replicated measurements proved to be challenging using existing procedures. Therefore, this paper presents an alternative and combined procedure for identifying and validating the controllers and parameters. The procedure utilises measurement data from trip tests, standard controller models, and an optimisation algorithm. The procedure also combines hybrid simulations and system-wide simulations. A successful application of the proposed procedure on the power system of the Faroe Islands is presented. The proposed approach can be applied to other power systems and is especially suitable for other island power systems of similar size to the Faroese power system.
Original language | English |
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Title of host publication | 7th International Hybrid Power Plants and Systems Workshop, HYB 2023 |
Number of pages | 8 |
Volume | 2023 |
Publisher | IEEE (Institute of Electrical and Electronics Engineers) |
Publication date | 16 Aug 2023 |
Edition | 3 |
Pages | 108-115 |
Article number | 10220142 |
ISBN (Electronic) | 978-1-83953-909-1 |
DOIs | |
Publication status | Published - 16 Aug 2023 |
Event | 7th International Hybrid Power Plants & Systems Workshop (HYB 2023) - Tórshavn, Faroe Islands Duration: 23 May 2023 → 24 May 2023 |
Workshop
Workshop | 7th International Hybrid Power Plants & Systems Workshop (HYB 2023) |
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Country/Territory | Faroe Islands |
City | Tórshavn |
Period | 23/05/2023 → 24/05/2023 |
Keywords
- DYNAMIC MODEL VALIDATION
- FAROE ISLANDS
- ISLANDED POWER SYSTEM
- PARAMETER IDENTIFICATION
- RENEWABLE ENERGY
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Dive into the research topics of 'Procedure for parameter identification and validation of governor and automatic voltage regulator dynamic models'. Together they form a unique fingerprint.Projects
- 1 Finished
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Ensuring Grid Stability and Supply Reliability in a 100% Renewable Electricity Sector
Tróndheim, H. M. (PI), Bak, C. L. (Supervisor), Faria da Silva, F. M. (Supervisor), Niclasen, B. A. (Supervisor) & Nielsen, T. (Supervisor)
05/11/2018 → 08/04/2022
Project: PhD Project