Fault Current Limiter For The Advanced And Improved Performance of Flexible Grid

International Journal of VLSI & Signal Processing
© 2021 by SSRG - IJVSP Journal
Volume 8 Issue 2
Year of Publication : 2021
Authors : Sharmila Devi.G.R, Dr.S.Vijayarajan, V.Vaishnavi
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How to Cite?

Sharmila Devi.G.R, Dr.S.Vijayarajan, V.Vaishnavi, "Fault Current Limiter For The Advanced And Improved Performance of Flexible Grid," SSRG International Journal of VLSI & Signal Processing, vol. 8,  no. 2, pp. 1-4, 2021. Crossref, https://doi.org/10.14445/23942584/IJVSP-V8I2P101

Abstract:

For designing utilization of the adaptable grid, a few specialized issues actually should have been explored, one of which is the fault current handling (FCH). In a matrix circuit the FCH spreads very quick with the assistance of FCL. Traditionally circuit breakers are utilized to distinguish the blame and separate the organization at which the issue happens. A FCL can keep away from the negative impact of the reactor or the electrical switch on the framework transient reaction speed and activity soundness. Additionally here the issue current can be cleared a lot quicker and the necessity on the circuit breakers can be diminished essentially. Thusly a FCL is utilized to beat this issue. The test and reenactment contextual analyses are completed to check the functioning guideline and superiorities of the proposed FCL.

Keywords:

BSFC-NSFCL, CSO,FCL,seeking mode, tracking mode.

References:

[1] Jiang, H., & Qin, L. (2018). Research on fault current limiter based on fast switching technology. 2018 3rd International Conference on Control and Robotics Engineering (ICCRE).
[2] Moon, G.-H., Wi, Y.-M., Lee, K., &Joo, S.-K. (2011). Fault Current Constrained Decentralized Optimal Power Flow Incorporating Superconducting Fault Current Limiter (SFCL). IEEE Transactions on Applied Superconductivity, 21(3) 2157–2160.
[3] Jia, Y., Shi, Z., Zhu, H., Hao, L., Zou, J., & Yuan, J. (2015). Cognition on the Current-Limiting Effect of Saturated-Core Superconducting Fault Current Limiter. IEEE Transactions on Magnetics, 51(11) 1–4.
[4] Hagh, M. T., &Abapour, M. (2009). Nonsuperconducting Fault Current Limiter With Controlling the Magnitudes of Fault Currents. IEEE Transactions on Power Electronics, 24(3) 613–619.
[5] Xiaoqing, Z., & Li, M. (2008). Using the Fault Current Limiter With Spark Gap to Reduce Short-Circuit Currents. IEEE Transactions on Power Delivery, 23(1) 506–507.
[6] Sharma, J. P., & Chauhan, V. (2015). Analysis and control of fault current by firing angle control of solid state fault current limiter. 2015 International Conference on Energy Systems and Applications.
[7] Clarke, C. R., Kamiab, A., &Abramovitz, A. (2012). Current limiter performance under an actual multiple fault event. 2012 IEEE Power and Energy Society General Meeting. doi:10.1109/pesgm.2012.6343971
[8] Yamaguchi, H., &Kataoka, T. (2006). Effect of Magnetic Saturation on the Current Limiting Characteristics of Transformer Type Superconducting Fault Current Limiter. IEEE Transactions on Applied Superconductivity, 16(2) 691–694
[9] Vijayarajan, S., Kamaraj, N., Selvaperumal, S.(2014)
[10] Day and night utilization of solar PV system integrated with stand alone wind generator for real and reactive power management in three phase unbalanced load
[11] Applied Mechanics and Materials, 573, 702–707
[12] Vijayarajan, S., Kamaraj, N.(2013). Real and reactive power control in a three phase unbalanced load supported by solar PV plant at consumer end
[13] International Review of Electrical Engineering, 8(4) 1333–1340
[14] Rahila J, M Santhi Integrated fuzzy and phase shift controller for output step voltage control in multilevel inverter with reduced switch count, Automatika, 61(2) 238-249.