Title :
Improving the accuracy of fault detection location by application of unconventional measuring transformers
Author :
Lipsky, A. ; Miteva, N. ; Lokshin, E.
Author_Institution :
Dept. of Electr. & Electron. Eng., Ariel Univ. Ariel, Israel
Abstract :
One of the main requirements to the methods and means of fault detection location in the power transmission lines is their satisfactory accuracy. This accuracy is limited by the accuracy class of the current and voltage measuring instruments and parameter reliability of power transmission lines. The paper presents the reasons for the low accuracy of current and voltage measuring transformers used in practice in the high voltage power networks. To solve the fault detection location problem, it is proposed to use unconventional measuring means with linear frequency response in a sufficiently wide range of frequencies and current and voltage changes corresponding to the short-circuit mode. These devices require a non-traditional installation: directly on the power line wires. Taking into account the characteristics of unconventional measuring means, a method for determining the parameters of transmission lines in operating conditions, and a procedure for calculation of the short-circuit point distance are proposed. The experiment simulated in a computer has shown sufficient accuracy of the suggested procedure.
Keywords :
electric current measurement; fault diagnosis; power overhead lines; power transformers; power transmission faults; power transmission reliability; short-circuit currents; voltage measurement; wires (electric); current measuring instruments; fault detection location accuracy improvement; high voltage power networks; overhead lines; parameter reliability; power line wires; power transmission lines; short-circuit mode; short-circuit point distance calculation; unconventional measuring transformers; voltage measuring instruments; Accuracy; Current measurement; Current transformers; Fault location; Power measurement; Transmission line measurements; Voltage measurement; fault detection location accuracy; overhead line transmission parameters; three-phases short-circuit; unconventional measuring transformers;
Conference_Titel :
EUROCON, 2013 IEEE
Conference_Location :
Zagreb
Print_ISBN :
978-1-4673-2230-0
DOI :
10.1109/EUROCON.2013.6625064