Title :
Uprating an overhead line. Italian TSO applications to increase system N−1 security
Author :
Carlini, Enrico Maria ; Favuzza, Salvatore ; Giangreco, S.E. ; Massaro, F. ; Quaciari, Cristiano
Author_Institution :
TERNA GROUP S.p.A., Rome, Italy
Abstract :
This paper analyzes innovative devices to optimize the energy flows transmission on existing overhead lines. Indeed sometimes the structural asset isn´t adequate to manage energy generated by Renewable Energy Source (RES) in particular operating conditions. In addiction the outage of primary substations on the grid and the increase of consumptions have caused growing load currents. In order to satisfy these needs, TSOs have adopted new measures on existing power lines and N-1 criteria to ensures the electrical grid security. These particular devices are Dynamic Rating systems. After introducing thermal resistant conductors and Dynamic Rating (DR) solutions, paper reports two different applications used by TERNA Italian TSO. These systems are already installed on lines and they are contributing to increase power flows thanks to raise by 10-30% of the real time dynamic ratings than the static evaluations. Advantages for electrical systems are many such energy vectors optimizations, congestions reductions, reliability increasing, cross-border power flows increasing, smart grid development.
Keywords :
energy management systems; load flow; overhead line conductors; power overhead lines; power system management; power system security; power transmission reliability; smart power grids; substations; DR solution; RES; TERNA Italian TSO application; cross-border power flow; dynamic rating system; electrical grid security; energy flow transmission optimization; energy generated management; energy vector optimization; load current consumption; overhead line; primary substation; reliability; renewable energy source; smart grid development; system N-1 security; thermal resistant conductors; Barium; Hafnium; Renewable energy sources; Dynamic thermal rating; Vprating of overhead line; thermal resistant conductor;
Conference_Titel :
Renewable Energy Research and Applications (ICRERA), 2013 International Conference on
Conference_Location :
Madrid
DOI :
10.1109/ICRERA.2013.6749875