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A Novel Quasi-Resonant Bridge Modular Switched-Capacitor Converter With Enhanced Efficiency and Reduced Output Voltage Ripple

机译:新型准谐振桥式模块化开关电容器转换器,具有增强的效率和降低的输出电压纹波

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摘要

A novel quasi-resonant bridge modular switched-capacitor converter (BMSCC) is proposed in the paper. The main merit is that its resonant circuit has high stability and simplicity, resulting from the employment of the stray inductance distributed in the circuit as a collective resonant inductor. Accordingly, the current spike during switching operation is removed due to zero-current-switching (ZCS) realization. Another distinct merit is that the proposed converter features symmetric construction. With this kind of construction, the voltage ripple of charge/pump capacitors can be cancelled out with each other and then output voltage ripple will be largely reduced. Thus, it is unnecessary to use a bulky capacitor to reduce output voltage ripple. Compared with conventional SCCs, at the same conversion ratio, the BMSCC with symmetric construction requires fewer switches and capacitors with lower voltage stress, so as to cut the size and cost and promote the power destiny further. It is also noteworthy that the symmetric construction character assures that the two symmetric parts can work independently under a simplified control strategy. In addition, the modular configuration contributes to convenient voltage extension conveniently. The simulation and experimental results of a 100 W prototype with a voltage conversion ratio of eight validate the principle and features of this topology.
机译:本文提出了一种新型的准谐振电桥模块化开关电容变换器(BMSCC)。其主要优点是其谐振电路具有高稳定性和简单性,这是由于采用了分布在电路中的杂散电感作为集体谐振电感器。因此,由于实现零电流开关(ZCS),因此消除了开关操作期间的电流尖峰。另一个明显的优点是,提出的转换器具有对称结构。通过这种结构,电荷/泵电容器的电压纹波可以相互抵消,然后输出电压纹波将大大减少。因此,无需使用大容量电容器来减小输出电压纹波。与传统的SCC相比,在相同的转换比下,对称结构的BMSCC需要较少的开关和具有较低电压应力的电容器,从而减小了尺寸和成本,并进一步提高了功率。还值得注意的是,对称的构造特征确保了两个对称的部分可以在简化的控制策略下独立工作。此外,模块化配置有助于方便地扩展电压。电压转换率为8的100 W原型的仿真和实验结果验证了该拓扑的原理和特性。

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