Optimization Study of High-Efficiency Rectifier Circuits for Uninterruptible Power Supply Systems

Authors

  • Yulu Fan

DOI:

https://doi.org/10.54097/2dsprz18

Keywords:

UPS, filtering, three-phase bridge full-wave rectifier.

Abstract

Uninterruptible Power Supply (UPS) is a kind of equipment that can supply power to other equipment’s in an uninterrupted way, which can ensure that the key equipment’s can continue to operate stably in the face of power grid failure. Therefore, uninterruptible power supply system is of utmost importance in the modern power system. The aim of this paper is to optimize rectifier circuits in uninterruptible power supply system that rely on three-phase bridge full-wave rectifier circuits. Build a model using LTspice and simulate it, compare and analyze the waveform characteristics of the output voltage of the load under different filtering schemes, and propose optimization strategies based on actual production. As one of the key components of the UPS system, the rectifier circuit can directly affect the efficiency with stability of the whole system. Hence, it is important to optimize the high efficiency rectifier circuit to improve the overall performance of the UPS system.

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References

Jason F. You Need an Uninterruptible Power Supply (UPS). 2023. https://www.howtogeek.com/868400/you-need-an-uninterruptible-power-supply-ups/

An J. Research and application of wireless parallel connection technology for inverters. Harbin Institute of Technology, 2011.

Naprienko A S, Filippov M A, Bachurin P A, et al. An On-Line Uninterruptible Power Supply with High Input Power Factor. 2023 IEEE 24th International Conference of Young Professionals in Electron Devices and Materials (EDM). IEEE, 2023: 1090-1095.

LiWei Z. Analysis of capacitor-filtered three-phase bridge rectifier circuit. Electronic Technology, 2009, 36(12): 55-56.

Jiyun C, Wenchao J. Simulation of three-phase bridge fully controlled rectifier circuit. Journal of Changchun University of Technology: natural science edition, 2019, 40(6):6.

Zhao'an W, Jinjun L. Power Electronics. Beijing: Machinery Industry Publishing House, 2009.

Bououd M, Yiyu L A I, Voldoire A, et al. Mitigating Reverse Recovery Power Losses in MOSFET Switching Cell using Extra Schottky Diodes-Application to Voltage Source Inverter. Power Electronic Devices and Components, 2024: 100066.

Gang L, Donglai Z, Jianyou Z. Study and suppression of transformer DC bias in single-phase bridge inverter circuits. Power Electronics Technology, 2006, 40(3): 77-79.

Huaguang K. Electronic technology: simulation part (version 3). Beijing: Higher Education Press, 1994.512-516.

Kaifeng Helishi Industrial Control Instrument Co. A kind of high pressure electromagnetic flowmeter:CN202022673697.2. 2021.

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Published

19-08-2024

How to Cite

Fan, Y. (2024). Optimization Study of High-Efficiency Rectifier Circuits for Uninterruptible Power Supply Systems. Highlights in Science, Engineering and Technology, 111, 391-399. https://doi.org/10.54097/2dsprz18