Method of Elimination Inrush Current After Connection of High Input DC Voltage

Author:

Kellner Jakub1,Prazenica Michal1

Affiliation:

1. Department of mechatronics and electronics, University of Zilina, Zilina, SLOVAKIA

Abstract

This article deals with the problem of elimination inrush currents. The document proposes an active method for limiting the inrush currents during circuit switching when high inrush currents occur. The proposed system limits current in the circuit by means of a series connected Mosfet transistor. The Mosfet transistor is controlled in a linear resistive region. In the case of an inrush current in a circuit, the Mosfet transistor limits the magnitude of the current flowing into the circuit. The article also solves the problem of transistor power load. In the article there is a chapter that deals with the maximum magnitude of the limiting current that can flow through the transistor so as not to destroy it. In this new inrush current limiting configuration, the operator can directly define the amount of surge current that must not be exceeded after the circuit is closed. The proposed system is also complemented by other protective and control elements that are described in this article.

Publisher

World Scientific and Engineering Academy and Society (WSEAS)

Subject

Electrical and Electronic Engineering,Energy (miscellaneous)

Reference15 articles.

1. J-Ch. Wu, H-L. Jou, K-D Wu, N-T Shen, Hybrid Switch to Suppress the Inrush Current of AC Power Capacitor, IEEE Transaction on Power Delivery, vol. 20, n. 1,pp. 506-511.

2. T. Jiang, P. Cairoli, R. Rodrigues, Y. Du, (2017). Inrush current limiting for solid state devices using NTC resistor. SoutheastCon 2017. doi:10.1109/secon.2017.7925398.

3. Iuga B., & Tirnovan R. A. (2019). Step by step Limiting for Capacitors Inrush Current Used in Voltage Power Supplies. 2019 8th International Conference on Modern Power Systems (MPS). doi: 10.1109/mps.2019.8759664.

4. A. Johnston, M. Johnston, J. Sweat, A. El-Shahat, Small-Scale Electric Vehicle DC-DC converter for Nano-grids Applications, WSEAS Transactions on Power Systems, ISSN: 2224-350X, Vol. 12, 2017, p.134-150, https://www.wseas.org/multimedia/journals/power/2017/a305916-078.pdf

5. A. Bharathi Sankar, R. Seyezhai, Super capacitor/Battery based Hybrid Power Electric Bicycle, Wseas Transactions on Power Systems, ISSN:2224-350X, Vol. 14, 2019, , p.156-162. https://www.wseas.org/multimedia/journals/power/2019/a385116-091.pdf

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