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Development of multiple output operation based on single stage switched-capacitor resonant converters

机译:基于单级开关电容器谐振转换器的多输出操作的开发

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摘要

Power converters are commonly based on the Switched Mode techniques which use pulse-width modulation to control the converters. Switching loss and switching noise restrict high frequency operation such as more than 200kHz. Resonant converter is a solution of the above problem. The resonant converter enables switching devices to operate under zero-current or zero-voltage switching. The main disadvantage is that the parasitic effect is very difficult to handle and the transistors may not work at zero-voltage/current switching through the whole range of operation. A family of switched-capacitor circuits using two transistors is presented to overcome the above problems. This family only requires very small inductor for resonance and therefore is suitable for hybridization. It has variable topologies, which provide different voltage conversion ratios. Each of the topology can be merged to produce multiple outputs easily that is very difficult to perform when classical switched-mode or resonant converters are used. This paper investigates the feasibility of this circuit merger technique. Experimental and theoretical analyses are presented. Results confirmed that the converter operated under zero-current switching. The circuit is simple and multiple outputs can be obtained by simply connecting the switching capacitor states together. Experimental results have confirmed that the converter can produce high conversion efficiency. This paper will present the double inverting, double step-up, and inverting and step-up circuits.
机译:功率转换器通常基于开关模式技术,该技术使用脉宽调制来控制转换器。开关损耗和开关噪声限制了200kHz以上的高频工作。谐振转换器是上述问题的解决方案。谐振转换器使开关器件能够在零电流或零电压开关下工作。主要缺点是寄生效应很难处理,并且在整个工作范围内,晶体管可能无法在零电压/电流切换下工作。提出了使用两个晶体管的一系列开关电容器电路,以克服上述问题。该系列仅需要非常小的电感器即可谐振,因此适合杂交。它具有可变的拓扑,可提供不同的电压转换率。每个拓扑都可以合并以轻松产生多个输出,这在使用经典的开关模式或谐振转换器时很难执行。本文研究了这种电路合并技术的可行性。进行了实验和理论分析。结果证实转换器在零电流开关下工作。该电路很简单,只需将开关电容器状态连接在一起即可获得多个输出。实验结果证实该转换器可以产生高转换效率。本文将介绍双反相,双升压,反相和升压电路。

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