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首页> 外文期刊>Power Electronics, IEEE Transactions on >Control of ZCS-SR Inverter-Fed Voltage Multiplier-Based High-Voltage DC–DC Converter by Digitally Tuning Tank Capacitance and Slightly Varying Pulse Frequency
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Control of ZCS-SR Inverter-Fed Voltage Multiplier-Based High-Voltage DC–DC Converter by Digitally Tuning Tank Capacitance and Slightly Varying Pulse Frequency

机译:基于ZCS-SR逆变器馈电倍压器的高压DC-DC转换器的控制,通过数字调谐储能电容和略微变化的脉冲频率

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摘要

Conventional pulse-frequency-modulated (PFM) zero-current switching series resonant (SR) inverter-fed voltage-multiplier-based high-voltage dc power supplies have nearly zero switching loss. However, they have limitations of poor controllability at light load and large output voltage ripple at low switching frequencies. To address these problems, this letter proposes a new control scheme that is based on digitally tuning tank capacitance and slightly varying pulse frequency of SR inverter. For the realization of the proposed control approach, the tank circuit of the resonant inverter is made up of several tank capacitors that are switched into or out of the tank circuit by electromechanical switches. By digitally modulating the tank capacitance, the output voltage changes in steps. The regulation of output voltage between two adjacent steps is achieved by slightly varying the pulse frequency. The proposed control scheme has several features, namely, a wide range of output voltage controllability even at light loads, less output voltage ripple, and less current stress on the inverter''s power switches at light loads. Therefore, the proposed control approach alleviates most of the problems associated with conventional PFM. Experimental results obtained from a scaled-down laboratory prototype are presented to verify the effectiveness of the proposed system.
机译:常规的基于脉冲频率调制(PFM)的零电流开关串联谐振(SR)逆变器供电的基于电压倍增器的高压dc电源的开关损耗几乎为零。但是,它们的局限性在于在轻负载时可控性差,在低开关频率下输出电压纹波大。为了解决这些问题,这封信提出了一种新的控制方案,该方案基于数字调谐储能电容和SR逆变器的脉冲频率稍有变化。为了实现所提出的控制方法,谐振逆变器的振荡电路由几个振荡电容器组成,这些振荡电容器通过机电开关切换到振荡电路中或从振荡电路中退出。通过数字调制储能电容,输出电压会逐步变化。通过略微改变脉冲频率,可以实现两个相邻步骤之间的输出电压调节。所提出的控制方案具有几个特征,即即使在轻负载下也具有宽范围的输出电压可控制性,较小的输出电压纹波以及在轻负载下对逆变器电源开关的电流应力较小。因此,所提出的控制方法减轻了与传统PFM相关的大多数问题。提出了从按比例缩小的实验室原型获得的实验结果,以验证所提出系统的有效性。

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