Modeling and control of series resonant converter for high voltage applications

B. Amghar, M. Darcherif, J. Barbot, D. Boukhetala
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引用次数: 8

Abstract

Most industrial processes that use electricity as a source of voltage or current, require power circuit for the control of its physical quantities. Power converters are a multi-site privileged in the control of high power systems. In this article we show that the series resonant DC/DC converter, which is a hybrid system. The SRC achieves an output DC voltage equal to n times the input voltage of the converter, the major disadvantage of this type of converter is the the stresses on the power components and Capacitor Charge Time. Furthermore, a control strategy for minimizing the no-load conduction losses is proposed and the transient behavior in case of load steps including output short-circuit is discussed based on digital simulations.
高压串联谐振变换器的建模与控制
大多数使用电作为电压或电流来源的工业过程都需要电路来控制其物理量。电源变换器是一种多站点的高功率系统的控制特权。本文介绍了串联谐振DC/DC变换器,它是一种混合系统。SRC实现输出直流电压等于n倍的转换器的输入电压,这种类型的转换器的主要缺点是对功率元件和电容器充电时间的应力。此外,提出了一种最小化空载导通损耗的控制策略,并在数字仿真的基础上讨论了含输出短路的负载阶跃情况下的暂态行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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