LAPSE:2023.7923
Published Article

LAPSE:2023.7923
Particle Swarm Optimization for Optimal Frequency Response with High Penetration of Photovoltaic and Wind Generation
February 24, 2023
Abstract
As the installation of solar-photovoltaic and wind-generation systems continue to grow, the location must be strategically selected to maintain a reliable grid. However, such strategies are commonly subject to system adequacy constraints, while system security constraints (e.g., frequency stability, voltage limits) are vaguely explored. This may lead to inaccuracies in the optimal placement of the renewables, and thus maximum benefits may not be achieved. In this context, this paper proposes an optimization-based mathematical framework to design a robust distributed generation system, able to keep system stability in a desired range under system perturbance. The optimum placement of wind and solar renewable energies that minimizes the impact on system stability in terms of the standard frequency deviation is obtained through particle swarm optimization, which is developed in Python and executed in PowerFactory-DIgSILENT. The results reveal that the proposed approach has the potential to reduce the influence of disturbances, enhancing critical clearance time before frequency collapse and supporting secure power system operation.
As the installation of solar-photovoltaic and wind-generation systems continue to grow, the location must be strategically selected to maintain a reliable grid. However, such strategies are commonly subject to system adequacy constraints, while system security constraints (e.g., frequency stability, voltage limits) are vaguely explored. This may lead to inaccuracies in the optimal placement of the renewables, and thus maximum benefits may not be achieved. In this context, this paper proposes an optimization-based mathematical framework to design a robust distributed generation system, able to keep system stability in a desired range under system perturbance. The optimum placement of wind and solar renewable energies that minimizes the impact on system stability in terms of the standard frequency deviation is obtained through particle swarm optimization, which is developed in Python and executed in PowerFactory-DIgSILENT. The results reveal that the proposed approach has the potential to reduce the influence of disturbances, enhancing critical clearance time before frequency collapse and supporting secure power system operation.
Record ID
Keywords
optimization wind generation, Particle Swarm Optimization, power system stability, PV system
Subject
Suggested Citation
Alvarez-Alvarado MS, Rengifo J, Gallegos-Núñez RM, Rivera-Mora JG, Noriega HH, Velasquez W, Donaldson DL, Rodríguez-Gallegos CD. Particle Swarm Optimization for Optimal Frequency Response with High Penetration of Photovoltaic and Wind Generation. (2023). LAPSE:2023.7923
Author Affiliations
Alvarez-Alvarado MS: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador
Rengifo J: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador [ORCID]
Gallegos-Núñez RM: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador
Rivera-Mora JG: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador
Noriega HH: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador
Velasquez W: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador [ORCID]
Donaldson DL: Department of Electronic, Electrical and Systems Engineering, University of Birmingham, Birmingham B15 2TT, UK [ORCID]
Rodríguez-Gallegos CD: Solar Energy Research Institute of Singapore (SERIS), National University of Singapore (NUS), Singapore 117574, Singapore
Rengifo J: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador [ORCID]
Gallegos-Núñez RM: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador
Rivera-Mora JG: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador
Noriega HH: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador
Velasquez W: Escuela Superior Politécnica del Litoral (ESPOL), Guayaquil EC090112, Ecuador [ORCID]
Donaldson DL: Department of Electronic, Electrical and Systems Engineering, University of Birmingham, Birmingham B15 2TT, UK [ORCID]
Rodríguez-Gallegos CD: Solar Energy Research Institute of Singapore (SERIS), National University of Singapore (NUS), Singapore 117574, Singapore
Journal Name
Energies
Volume
15
Issue
22
First Page
8565
Year
2022
Publication Date
2022-11-16
ISSN
1996-1073
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Original Submission
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PII: en15228565, Publication Type: Journal Article
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LAPSE:2023.7923
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https://doi.org/10.3390/en15228565
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Feb 24, 2023
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