Title :
A New Method for Real-Time Monitoring of High-Voltage Transmission Line Conductor Sag
Author :
Olsen, R. G. ; Edwards, K. S.
Author_Institution :
Washington State University; Bonneville Power Administration
fDate :
6/1/2002 12:00:00 AM
Abstract :
The amount of power flowing through a high-voltage transmission line is proportional to its voltage and the current flowing through it. To increase power flow without modifying the line to allow increased voltage, the current must be increased. There is a limit to this, however, since increasing the current causes the conductor temperature to increase and hence the conductors to elongate and sag. In this paper, a method to simply and inexpensively measure the amount of conductor sag and, by simple calculation, the average conductor core temperature is described and the results of a field test are summarized. The method involves attaching two ends of a grounded wire of high electrical resistance to an appropriate location on each of two transmission line towers and measuring the current induced on the wire by the nearby transmission line conductors. Information from this measurement is a critical input to any method for dynamically rating transmission lines.
Keywords :
Conductors; Electrical resistance measurement; Load flow; Monitoring; Power transmission lines; Temperature; Transmission line measurements; Transmission lines; Voltage; Wire; Distributed parameter circuits; electromagnetic coupling; power generation dispatch; power system monitoring; power transmission lines; transmission line measurements;
Journal_Title :
Power Engineering Review, IEEE
DOI :
10.1109/MPER.2002.4312315