dor_id: 4110196

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856.4.0.u: https://jart.icat.unam.mx/index.php/jart/article/view/272/269

100.1.#.a: Safari, Amin

524.#.#.a: Safari, Amin (2013). A PSO Procedure for a Coordinated Tuning of Power System Stabilizers for Multiple Operating Conditions. Journal of Applied Research and Technology; Vol. 11 Núm. 5. Recuperado de https://repositorio.unam.mx/contenidos/4110196

245.1.0.a: A PSO Procedure for a Coordinated Tuning of Power System Stabilizers for Multiple Operating Conditions

502.#.#.c: Universidad Nacional Autónoma de México

561.1.#.a: Instituto de Ciencias Aplicadas y Tecnología, UNAM

264.#.0.c: 2013

264.#.1.c: 2013-10-01

653.#.#.a: Power system stabilizer; multi-machine power system; PSO; dynamic stability

506.1.#.a: La titularidad de los derechos patrimoniales de esta obra pertenece a las instituciones editoras. Su uso se rige por una licencia Creative Commons BY-NC-SA 4.0 Internacional, https://creativecommons.org/licenses/by-nc-sa/4.0/legalcode.es, para un uso diferente consultar al responsable jurídico del repositorio por medio del correo electrónico gabriel.ascanio@icat.unam.mx

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520.3.#.a: The problem of coordinated tuning stabilizers in multi-machine power systems is formulated here as a sequence ofoptimization problems. The design problem of stabilizers is converted to a nonlinear optimization problem with a multiobjectivefitness function. The proposed method employs particle swarm optimization (PSO), an algorithm to searchfor optimal parameter settings of a widely used conventional fixed-structure lead-lag power system stabilizers(CPSSs). One of the main advantages of the proposed approach is its robustness to the initial parameter settings. Inaddition, the quality of the optimal solution does not rely on the initial guess. The robustness and performance of thenewly designed controllers is evaluated in a large sixteen-machine power system subjected to different loadingconditions in comparison with the genetic algorithm (GA) based PSSs design. The superiority of the controllerdesigned is demonstrated through the nonlinear time-domain simulation and some performance indices studies. Theresults analysis reveals that the tuned PSSs with proposed objective function has an excellent capability in dampingpower system low-frequency oscillations.

773.1.#.t: Journal of Applied Research and Technology; Vol. 11 Núm. 5

773.1.#.o: https://jart.icat.unam.mx/index.php/jart

022.#.#.a: ISSN electrónico: 2448-6736; ISSN: 1665-6423

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264.#.1.b: Instituto de Ciencias Aplicadas y Tecnología, UNAM

doi: https://doi.org/10.1016/S1665-6423(13)71574-8

harvesting_date: 2023-11-08 13:10:00.0

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Artículo

A PSO Procedure for a Coordinated Tuning of Power System Stabilizers for Multiple Operating Conditions

Safari, Amin

Instituto de Ciencias Aplicadas y Tecnología, UNAM, publicado en Journal of Applied Research and Technology, y cosechado de Revistas UNAM

Licencia de uso

Procedencia del contenido

Cita

Safari, Amin (2013). A PSO Procedure for a Coordinated Tuning of Power System Stabilizers for Multiple Operating Conditions. Journal of Applied Research and Technology; Vol. 11 Núm. 5. Recuperado de https://repositorio.unam.mx/contenidos/4110196

Descripción del recurso

Autor(es)
Safari, Amin
Tipo
Artículo de Investigación
Área del conocimiento
Ingenierías
Título
A PSO Procedure for a Coordinated Tuning of Power System Stabilizers for Multiple Operating Conditions
Fecha
2013-10-01
Resumen
The problem of coordinated tuning stabilizers in multi-machine power systems is formulated here as a sequence ofoptimization problems. The design problem of stabilizers is converted to a nonlinear optimization problem with a multiobjectivefitness function. The proposed method employs particle swarm optimization (PSO), an algorithm to searchfor optimal parameter settings of a widely used conventional fixed-structure lead-lag power system stabilizers(CPSSs). One of the main advantages of the proposed approach is its robustness to the initial parameter settings. Inaddition, the quality of the optimal solution does not rely on the initial guess. The robustness and performance of thenewly designed controllers is evaluated in a large sixteen-machine power system subjected to different loadingconditions in comparison with the genetic algorithm (GA) based PSSs design. The superiority of the controllerdesigned is demonstrated through the nonlinear time-domain simulation and some performance indices studies. Theresults analysis reveals that the tuned PSSs with proposed objective function has an excellent capability in dampingpower system low-frequency oscillations.
Tema
Power system stabilizer; multi-machine power system; PSO; dynamic stability
Idioma
spa
ISSN
ISSN electrónico: 2448-6736; ISSN: 1665-6423

Enlaces