DocumentCode :
2047419
Title :
Support vector machine based high speed protection relay for EHV/UHV transmission line
Author :
Ravishankar, K. ; Thukaram, D.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Sci., Bangalore, India
fYear :
2012
fDate :
17-19 Dec. 2012
Firstpage :
1
Lastpage :
6
Abstract :
This paper presents a fast and accurate relaying technique for a long 765kv UHV transmission line based on support vector machine. For a long EHV/UHV transmission line with large distributed capacitance, a traditional distance relay which uses a lumped parameter model of the transmission line can cause malfunction of the relay. With a frequency of 1kHz, 1/4th cycle of instantaneous values of currents and voltages of all phases at the relying end are fed to Support Vector Machine(SVM). The SVM detects fault type accurately using 3 milliseconds of post-fault data and reduces the fault clearing time which improves the system stability and power transfer capability. The performance of relaying scheme has been checked with a typical 765kV Indian transmission System which is simulated using the Electromagnetic Transients Program(EMTP) developed by authors in which the distributed parameter line model is used. More than 15,000 different short circuit fault cases are simulated by varying fault location, fault impedance, fault incidence angle and fault type to train the SVM for high speed accurate relaying. Simulation studies have shown that the proposed relay provides fast and accurate protection irrespective of fault location, fault impedance, incidence time of fault and fault type. And also the proposed scheme can be used as augmentation for the existing relaying, particularly for Zone-2, Zone-3 protection.
Keywords :
EMTP; fault location; lumped parameter networks; power system protection; power system relaying; power system stability; power transmission lines; relay protection; short-circuit currents; support vector machines; EHV transmission line; EMTP; Indian transmission system; SVM; UHV transmission line; distance relay; distributed capacitance; distributed parameter line model; electromagnetic transients program; fault clearing time; fault impedance; fault incidence angle; fault location; fault type; high speed accurate relaying; high speed protection relay; incidence time; lumped parameter model; post-fault data; power transfer capability; relaying scheme; relaying technique; short circuit fault cases; support vector machine; system stability; voltage 765 kV; zone-2 protection; zone-3 protection; Electromagnetic Transients program (EMTP); UHV transmission line protection; support vector machine (SVM);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power, Control and Embedded Systems (ICPCES), 2012 2nd International Conference on
Conference_Location :
Allahabad
Print_ISBN :
978-1-4673-1047-5
Type :
conf
DOI :
10.1109/ICPCES.2012.6508067
Filename :
6508067
Link To Document :
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