Title :
An Accurate Offline Phasor Estimation for Fault Location in Series-Compensated Lines
Author :
Rubeena, Rubeena ; Zadeh, Mohammad R. Dadash ; Bains, Tirath Pal S.
Author_Institution :
Dept. of Electr. & Comput. Eng., Western Univ., London, ON, Canada
Abstract :
In series-compensated transmission lines, current and voltage signals measured by the line protection system include considerable subsynchronous frequency components (SSFCs), which are not sufficiently damped within a typical fault clearing time of the line protection system. This does not allow accurate phasor estimation and, therefore, phasor-based fault location. This paper presents an accurate algorithm which effectively filters out unwanted frequency components and noise to perform accurate phasor estimation for fault location in series-compensated transmission lines. Phasor estimation of a theoretical signal is first evaluated by using the proposed method, direct Prony analysis, and four-cycle discrete Fourier transform algorithm. Then, various fault locations of a 500-kV series-compensated transmission line simulated in PSCAD/EMTDC are used to comprehensively evaluate the performance of the proposed technique. It is shown that the proposed method can effectively attenuate SSFCs and other unwanted frequency components in current and voltage signals, allowing accurate phasor estimation to be obtained.
Keywords :
discrete Fourier transforms; fault location; phasor measurement; power transmission faults; power transmission lines; power transmission protection; PSCAD-EMTDC; SSFC; current signal; direct Prony analysis; four-cycle discrete Fourier transform algorithm; line protection system; offline phasor estimation; phasor-based fault location; series-compensated transmission lines; subsynchronous frequency component; typical fault clearing time; unwanted frequency component; voltage 500 kV; voltage signal; Capacitors; Discrete Fourier transforms; Estimation; Fault currents; Frequency estimation; Noise; Transient analysis; Fault location; phasor estimation; series-compensated line; subsynchronous frequency component (SSFC);
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2013.2283454