Permanent Faults Identification Using Least Squares Fitting Algorithm for Three-Phase Reclosure in Transmission Lines with Shunt Reactors[J]. 2013, 47(6): 85-89+96.
DOI:
Permanent Faults Identification Using Least Squares Fitting Algorithm for Three-Phase Reclosure in Transmission Lines with Shunt Reactors[J]. 2013, 47(6): 85-89+96.DOI: 10.7652/xjtuxb201306015.
Permanent Faults Identification Using Least Squares Fitting Algorithm for Three-Phase Reclosure in Transmission Lines with Shunt Reactors
To heighten sensitivity of permanent fault identification for single-phase-to-ground fault
a three-phase adaptive reclosure in transmission lines with shunt reactors is developed. It is found that the shunt reactor zero modal current gets with different free oscillation frequencies in transient fault or permanent fault fin the case of single-phase-to-ground. An identification model of shunt reactor zero-modal current is established
which includes decaying DC component and two frequency components corresponding to transient fault and permanent fault. Once the single-phase-to-ground fault occurs and circuit breakers open
each frequency component is obtained by least square fitting
where shunt reactor zero-modal current is available. The amplitudes of various frequency components are adopted to distinguish the permanent faults from transient faults. EMTP simulation shows that the proposed scheme is of higher sensitivity and freedom from the influences of transient resistance and fault position in permanent faults identification for transmission lines with shunt reactors.
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