DocumentCode
1786826
Title
Cenace´s experiences on implementing a wide area monitoring system (WAMS) in the Ecuadorian power system
Author
Cepeda, J. ; Echeverria, D. ; Arguello, G.
Author_Institution
CENACE, Quito, Ecuador
fYear
2014
fDate
12-14 Nov. 2014
Firstpage
1
Lastpage
7
Abstract
The improvement of synchronized phasor measurement technology has enabled the development of new methodologies in order to monitor, in real time, high stressed operating conditions that might eventually cause problems of steady-state angle or voltage stability, as well as oscillatory stability risks. In this paper, the main components of the wide area monitoring system (WAMS) and phasor measurement in electric power systems are described. Then, a description of the WAMS system installed in the electric system of Ecuador is presented. A summary of the experiences of the Ecuadorian ISO (Centro Nacional de Control de Energía - CENACE) as regards WAMS implementation is presented. These experiences include the installation of 22 phasor measurement units (PMU), a high speed communication system based in optical fiber, and a phasor data concentrator (PDC) located in the control center. PDC functions are: to manage the phasor information and to provide dynamic monitoring applications (among which are the monitoring of steady-state angle and voltage stabilities and oscillatory stability). Finally, each of the stability monitoring applications is described and some analyses of the information obtained from the installed WAMS system are performed, presenting also the first results. These analyses will allow future operative and process design improvements, both in the planning and operation in real time, which will lead to optimize the security and reliability of operation.
Keywords
phasor measurement; power system stability; Cenace; Centro Nacional de Control de Energía; Ecuadorian ISO; Ecuadorian power system; PDC; PMU; WAMS; WAMS system; dynamic monitoring applications; high speed communication system; high stressed operating conditions; operative improvements; optical fiber; oscillatory stability; oscillatory stability risks; phasor data concentrator; phasor measurement units; process design improvements; real time; steady-state angle; synchronized phasor measurement technology; voltage stability; wide area monitoring system; Biomedical monitoring; Monitoring; Phasor measurement units; Power system stability; Software; Stability criteria; PDC; PMU; Synchrophasor Measurement; WAMS;
fLanguage
English
Publisher
ieee
Conference_Titel
Central America and Panama Convention (CONCAPAN XXXIV), 2014 IEEE
Conference_Location
Panama City
Type
conf
DOI
10.1109/CONCAPAN.2014.7000455
Filename
7000455
Link To Document