Grid frequency control : Secondary frequency control tuning taking into account distributed primary frequency control

A new method developed and applied to tune Secondary Control Loop (SCL) for grid frequency control is presented. The presented method is based on an equivalent representation of all active distributed Primary Control Loop (PCL) in the grid for frequency control. The characteristic of each PCL is a...

Descripción completa

Detalles Bibliográficos
Autores principales: Agüero, Jorge Luis, Beroqui, Mario César, Issouribehere, Fernando
Formato: Objeto de conferencia
Lenguaje:Inglés
Publicado: 2010
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/36390
Aporte de:
id I19-R120-10915-36390
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Ingeniería
Energía Eléctrica
Frequency control
Governor
Primary frequency control
Secondary frequency control
Spinning reserve
Turbines
spellingShingle Ingeniería
Energía Eléctrica
Frequency control
Governor
Primary frequency control
Secondary frequency control
Spinning reserve
Turbines
Agüero, Jorge Luis
Beroqui, Mario César
Issouribehere, Fernando
Grid frequency control : Secondary frequency control tuning taking into account distributed primary frequency control
topic_facet Ingeniería
Energía Eléctrica
Frequency control
Governor
Primary frequency control
Secondary frequency control
Spinning reserve
Turbines
description A new method developed and applied to tune Secondary Control Loop (SCL) for grid frequency control is presented. The presented method is based on an equivalent representation of all active distributed Primary Control Loop (PCL) in the grid for frequency control. The characteristic of each PCL is associated to prime mover and its governors: Hydraulic, gas or steam. The equivalent model of distributed PCL takes into account all active representative composition of PCL in the grid for each typified power flow (seasons, working/not-working day, peak/valley, morning/afternoon/night, etc). By this way, each equivalent model of distributed PCL allows to find the best tuning of SCL for each typified power flow. This method was applied to tune the SCL of Yacyretá, a hydraulic power plant with 20 Kaplan turbines of 155 MW each one. Yacyretá is one of the power plants that have SCL in the “Sistema Argentino de Interconexión” (SADI), the largest power grid of Argentina.
format Objeto de conferencia
Objeto de conferencia
author Agüero, Jorge Luis
Beroqui, Mario César
Issouribehere, Fernando
author_facet Agüero, Jorge Luis
Beroqui, Mario César
Issouribehere, Fernando
author_sort Agüero, Jorge Luis
title Grid frequency control : Secondary frequency control tuning taking into account distributed primary frequency control
title_short Grid frequency control : Secondary frequency control tuning taking into account distributed primary frequency control
title_full Grid frequency control : Secondary frequency control tuning taking into account distributed primary frequency control
title_fullStr Grid frequency control : Secondary frequency control tuning taking into account distributed primary frequency control
title_full_unstemmed Grid frequency control : Secondary frequency control tuning taking into account distributed primary frequency control
title_sort grid frequency control : secondary frequency control tuning taking into account distributed primary frequency control
publishDate 2010
url http://sedici.unlp.edu.ar/handle/10915/36390
work_keys_str_mv AT aguerojorgeluis gridfrequencycontrolsecondaryfrequencycontroltuningtakingintoaccountdistributedprimaryfrequencycontrol
AT beroquimariocesar gridfrequencycontrolsecondaryfrequencycontroltuningtakingintoaccountdistributedprimaryfrequencycontrol
AT issouribeherefernando gridfrequencycontrolsecondaryfrequencycontroltuningtakingintoaccountdistributedprimaryfrequencycontrol
bdutipo_str Repositorios
_version_ 1764820472689590277