IEEE Power & Energy - Spanish - May/June 2018 - 39

comunes del estado y visibilidad de la red, con poca aplicación para soluciones escalables en los últimos años. cada
uno de estos problemas fue detectado por un sensor o un
par de sensores en un alimentador de distribución con un
conjunto limitado de implementaciones en un entorno de
investigación y una aplicación muy limitada de técnicas
avanzadas de Bda.
Existen numerosas técnicas de Bda que se desarrollan
fuera del campo de la ingeniería de potencia y que se pueden
adaptar. Por ejemplo, en genética, el Bda se usa para buscar la correlación de la mutación genética con los diagnósticos de cáncer. En ciencias sociales, el Bda puede ayudar a
identificar públicos objetivo para productos y servicios. con
una mayor mejora de estas técnicas y el desarrollo de nuevas
áreas de investigación, como los enfoques híbridos basados
en datos y modelos de flujo de potencia, podemos permitir
un nivel de visibilidad sin precedentes y una verdadera excelencia operativa para una red moderna.

Agradecimientos
agradecemos a ciaran Roberts del laboratorio nacional
lawrence Berkeley, california; alireza shahsavari, Hossein
akhavan-Hejazi y Mohammad Farajollahi de la universidad
de california en Riverside; Megala Fady de Riverside Public
utilities y tao Hong de la universidad de carolina del norte
en charlotte por sus interesantes aportes.

Lecturas complementarias
a. von Meier, E. stewart, a. McEachern, M. andersen y l.
Mehrmanesh, "Precision micro-synchrophasors for distribution systems: a summary of applications" (Microsincrofasores de precisión para sistemas de distribución: un resumen
de sus aplicaciones), IEEE Trans. Smart Grid, vol. 8, n.º 6,
págs. 2926-2936, nov. 2017.
a. shahsavari, a. sadeghi-Mobarakeh, E. stewart, E.
cortez, l. alvarez, F. Megala y H. Mohsenian-Rad, "distribution grid reliability versus regulation market efficiency:
an analysis based on micro-PMu data" (confiabilidad de

mayo/junio 2018

las redes de distribución versus eficiencia del mercado de regulación: un análisis basado en datos de micro PMu), IEEE
Trans. Smart Grid, vol. 8, n.º 6, págs. 2916-2925, nov. 2017.
a. shahsavari, M. Farajollahi, E. stewart, a. von Meier,
l. alvarez, E. cortez y H. Mohsenian-Rad, "a data-driven
analysis of capacitor bank operation at a distribution feeder
using micro-PMu data" (un análisis basado en datos sobre el funcionamiento de las baterías de condensadores en
alimentadores de distribución empleando datos de micro
PMu), en Proc. IEEE Power and Energy Society Innovative
Smart Grid Technologies Conf., abril 2017, págs. 1-5.
a. liao, E. stewart y E. Kara, "Micro-synchrophasor data
for diagnosis of transmission and distribution level events"
(datos de microsincrofasores para el diagnóstico de eventos
a nivel de transmisión y distribución), en Proc. Transmission
and Distribution Conf., 2016, págs. 1-5.
M. Farajollahi, a. shahsavari y H. Mohsenian-Rad, "location identification of distribution network events using
synchrophasor data" (identificación de ubicaciones de eventos de distribución de redes empleando datos de sincrofasores), en Proc. North American Power Symp., 2017, págs. 1-6.
a. shahsavari, M. Farajollahi, E. stewart, c. Roberts, F.
Megala, l. alvarez, E. cortez y H. Mohsenian-Rad, "autopsy on active distribution networks: a data-driven fault
analysis using micro-PMu data" (autopsia de las redes de
distribución activas: un análisis de fallas basado en datos de
micro PMu), en Proc. North American Power Symp., 2017,
págs. 1-7.

Biografías
Hamed Mohsenian-Rad es miembro de la universidad de
california, Riverside.
Emma Stewart es miembro del laboratorio nacional lorenzo livermore, california.
Ed Cortez es miembro del Riverside Public utilities, california.
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Table of Contents for the Digital Edition of IEEE Power & Energy - Spanish - May/June 2018

Contenidos
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IEEE Power & Energy - Spanish - May/June 2018 - Cover3
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