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Efficiency Characterization and Impedance Modeling of a Multilevel Switched-Capacitor Converter Using Pulse Dropping Switching Scheme

机译:利用脉冲下降开关方案的多级开关电容转换器的效率表征和阻抗建模

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摘要

A pulse dropping switching technique (PDT) has been presented in this paper to accomplish variable conversion ratio (CR) in a multilevel modular capacitor-clamped dc–dc converter in the step-up conversion mode. The switching pattern is generated by comparing a triangular wave with a rectangular wave, and a proper output voltage regulation can be obtained by controlling the relative frequency and amplitude of these two waveforms. A state-space modeling technique has been applied here to estimate the variation in equivalent output resistance (EOR) for different operating conditions of the PDT. The EOR can be varied in a wide range without changing the operating frequency of the converter, and thereby the PDT enhances the degrees of freedom to accomplish voltage regulation in a two-phase switched-capacitor converter. Slow-switching limit of the converter has been derived to define the boundary of the EOR. Different challenges and limitations of the proposed modulation scheme has been discussed in detail, and the proposed analysis has been verified by comparing the analytical expressions with the simulation and experimental results for different switching frequencies, modulation indices, and number of active modules. In addition, variations in the CR, efficiency and ripple voltage for different number of active modules and switching conditions have been described in detail.
机译:本文提出了一种脉冲下降开关技术(PDT),以在升压转换模式下的多级模块化电容钳位dc-dc转换器中实现可变转换比(CR)。通过将三角波与矩形波进行比较来生成开关模式,并且可以通过控制这两个波形的相对频率和幅度来获得适当的输出电压调节。这里已使用状态空间建模技术来估计PDT不同工作条件下等效输出电阻(EOR)的变化。 EOR可以在很宽的范围内变化,而无需改变转换器的工作频率,因此PDT增强了两相开关电容转换器中实现电压调节的自由度。已得出转换器的慢开关极限以定义EOR的边界。详细讨论了所提出的调制方案的不同挑战和局限性,并且通过将解析表达式与不同开关频率,调制指数和有源模块数量的仿真表达式和实验结果进行比较,对所提出的分析进行了验证。另外,已经详细描述了针对不同数量的有源模块和开关条件的CR,效率和纹波电压的变化。

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