Title :
A new scheme of protective system for three-phase transformers
Author :
Cheng, C.L. ; Lin, C.E.
Author_Institution :
Dept. of Electr. Eng., Huwei Inst. of Technol., Yunlin, Taiwan
Abstract :
Three-phase transformers are key equipment in power systems and power plants. Security and stability of three-phase transformers are both important and necessary for system operation. When a three-phase transformer is energized, the inrush current due to flux saturation in the core results in a malfunction of the differential relay and also causes a stress impact to the transformer. These have a bad effect on the security and stability of the power system. In this paper, an optimum nonsynchronous switching-on suppressing method of three-phase transformers inrush current is proposed. The proposed method is examined by experiment. It has excellent performance for suppressing three-phase inrush current. It is applied to design the protective system of a three-phase transformer. For the optimum nonsynchronous switching-on suppressing method, a protective system based on a single-chip controller is implemented. The system can distinguish fault current from inrush current. Therefore stress impact and overvoltage resulting from three-phase inrush current can be avoided. The active protection of three-phase transformer is obtained to improve the protective relaying system. Now, problems caused by three-phase inrush current can be detected and solved effectively.
Keywords :
electrical faults; magnetic flux; power transformer protection; relay protection; switching; 1 kVA; 110 V; 220 V; active protection; differential relay malfunction; fault current; flux saturation; inrush current; nonsynchronous switching-on suppression; overvoltage; power plants; power systems; protective system; security; single-chip controller; stability; stress impact; three-phase inrush current; three-phase transformer energization; three-phase transformers; Circuit faults; Phase transformers; Power generation; Power system protection; Power system relaying; Power system security; Power system stability; Stress; Surge protection; Transformer cores;
Conference_Titel :
Transmission and Distribution Conference and Exhibition 2002: Asia Pacific. IEEE/PES
Print_ISBN :
0-7803-7525-4
DOI :
10.1109/TDC.2002.1177730