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Design and sensitivity analysis of underfrequency load-shedding schemes of isolated power systems based on frequency stability margin

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IIT-23-108C.pdf (1.006Mb)
Date
2023-09-25
Author
Vadillo Díaz de Aguilar, Mónica
Sigrist, Lukas
Rouco Rodríguez, Luis
Rudez, Urban
Estado
info:eu-repo/semantics/publishedVersion
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Abstract
The objective of this paper is to tune the parameters of an underfrequency load shedding (UFLS) scheme based on the frequency stability margin (FSM) and compare its performance with the conventional UFLS scheme. The performance is assessed by simulating the outage of generating units of a real isolated Spanish power system. The results of this study demonstrate that the introduction of the FSM in the UFLS scheme contributes to a significant improvement in its performance. Furthermore, a sensitivity analysis of the FSM-based UFLS scheme is presented, where the effect of varying design parameters and the frequency response to consecutive generator trippings are studied.
 
The objective of this paper is to tune the parameters of an underfrequency load shedding (UFLS) scheme based on the frequency stability margin (FSM) and compare its performance with the conventional UFLS scheme. The performance is assessed by simulating the outage of generating units of a real isolated Spanish power system. The results of this study demonstrate that the introduction of the FSM in the UFLS scheme contributes to a significant improvement in its performance. Furthermore, a sensitivity analysis of the FSM-based UFLS scheme is presented, where the effect of varying design parameters and the frequency response to consecutive generator trippings are studied.
 
URI
http://hdl.handle.net/11531/105337
Design and sensitivity analysis of underfrequency load-shedding schemes of isolated power systems based on frequency stability margin
Tipo de Actividad
Capítulos en libros
Materias/ categorías / ODS
Instituto de Investigación Tecnológica (IIT)
Palabras Clave
Island power systems, frequency stability, underfrequency load shedding.
Island power systems, frequency stability, underfrequency load shedding.
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