CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS

March 2019
Vol-5, Issue-2
Paper ID: 9832
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
ELECTRICAL AND ELECTRONICS ENGINEERING
Keywords
PIC MICROCONTROLLER CAT SWARM OPTIMIZER
Abstract
This project proposes an optimization-controlled transformer-based solid-state fault current limiter (TBSSFCL) for radial distribution network applications. The proposed TBSSFCL is capable of controlling the magnitude of fault current. In order to control the fault current, primary winding of an isolating transformer is connected in series with the line and the secondary side is connected to a reactor, paralleled with a bypass switch which is made of anti-parallel insulated gate bipolar transistors. By controlling the magnitude of ac reactor current, the fault current is reduced and voltage of the point of common coupling is kept at an acceptable level. In order to control a switch pulse cat swarm optimized pulse generation used. CSO is generated by observing the behaviors of cats, and composed of two sub-models, i.e., tracing mode and seeking mode, which model upon the behaviors of cats. Experimental results using six test functions demonstrate that CSO has much better performance than Particle Swarm Optimization (PSO). Also, by this TBSSFCL, switching overvoltage is reduced significantly. The proposed TBSSFCL can improve the power quality factors and also, due to its simple structure, the cost is relatively low. Laboratory results are also presented to verify the simulation and theoretical studies. It is shown that this TBSSFCL can limit the fault current with negligible delay, smooth the fault current waveform, and improve the power quality.

Author Information

# Name Institute / Affiliation
1 L.N.DEEPIKA PRINCE SHRI VENKATESHWARA PADMAVATHY ENGINEERING COLLEGE
2 R.ABIRAMI PRINCE SHRI VENKATESHWARA PADMAVATHY ENGINEERING COLLEGE
3 K.PRESILLA VASANTHINI PRINCE SHRI VENKATESHWARA PADMAVATHY ENGINEERING COLLEGE

How to Cite

Use the following formats to cite this article in your research.

APA Style
L.N.DEEPIKA, R.ABIRAMI, & VASANTHINI, K.PRESILLA (2019). CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS. International Journal of Advance Research and Innovative Ideas In Education, 5(2), 1340-1345.
MLA Style
L.N.DEEPIKA, et al. "CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS." International Journal of Advance Research and Innovative Ideas In Education, vol. 5, no. 2, 2019, pp. 1340-1345.
IEEE Style
L.N.DEEPIKA, R.ABIRAMI, and K.PRESILLA VASANTHINI, "CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS," International Journal of Advance Research and Innovative Ideas In Education, vol. 5, no. 2, pp. 1340-1345, 2019.
Vancouver Style
L.N.DEEPIKA, R.ABIRAMI, VASANTHINI K.PRESILLA. CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS. International Journal of Advance Research and Innovative Ideas In Education. 2019;5(2):1340-1345.
Harvard Style
L.N.DEEPIKA, R.ABIRAMI, & VASANTHINI, K.PRESILLA (2019) 'CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS', International Journal of Advance Research and Innovative Ideas In Education, 5(2), pp. 1340-1345.
Chicago Style
L.N.DEEPIKA, R.ABIRAMI, and K.PRESILLA VASANTHINI. "CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS." International Journal of Advance Research and Innovative Ideas In Education 5, no. 2 (2019): 1340-1345.
Turabian Style
L.N.DEEPIKA, R.ABIRAMI, and K.PRESILLA VASANTHINI. "CAT SWARM OPTIMIZED NON-SUPERCONDUCTING FAULT CURRENT LIMITER FOR SUPPRESSING FAULTS." International Journal of Advance Research and Innovative Ideas In Education 5, no. 2 (2019): 1340-1345.

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