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Optimal Control of a High-Voltage Power Supply Based on the PRC-LCC Topology With a Capacitor as Output Filter

机译:基于带有电容器作为输出滤波器的PRC-LCC拓扑的高压电源的最优控制

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摘要

Several control strategies have been defined for the control of high-voltage power supplies based on resonant topologies. In recent papers, an optimal control based on minimizing the circulating energy in the converter has been proposed. This control is obtained by switching one of the branches of a full-bridge inverter synchronously with the resonant current. In this paper, the problems associated to this issue are analyzed, and a way to implement optimal control is proposed. Moreover, the dynamic behavior of a PRC-LCC converter with a capacitor as output filter is obtained from the mathematical model and verified experimentally. From this study, a second feedback loop is proposed to control the output voltage. Experimental waveforms will demonstrate the dynamic behavior of the closed-loop power supply under extreme variations: full load, short circuit, and no load.
机译:已经定义了几种基于谐振拓扑的高压电源控制策略。在最近的论文中,已经提出了基于最小化转换器中的循环能量的最优控制。该控制是通过与谐振电流同步切换全桥逆变器的一个分支来实现的。本文分析了与此问题相关的问题,并提出了一种实现最优控制的方法。此外,从数学模型获得了带有电容器作为输出滤波器的PRC-LCC转换器的动态特性,并进行了实验验证。根据这项研究,提出了第二个反馈环路来控制输出电压。实验波形将证明闭环电源在极端变化(满载,短路和空载)下的动态行为。

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