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Design and analysis of a generalised n-stage current-mode multiphase switehed-eapacitor converter

机译:广义n级电流模式多相硬碰电容变换器的设计与分析

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摘要

A new closed-loop generalised scheme for an n-stage current-mode multiphase switehed-eapacitor converter (CMSC) is proposed by combining multiphase operation and pulse-width-modulation (PWM) control for step-up DC-DC conversion and output current regulation. The CMSC is composed of n-voltage doublers and one constant current source in series. The n-voltage doublers are in charge of boosting output voltage, and combined with multiphase operation to provide voltage gain of 2~n at most. The current source is adopted mainly for supplying a constant current at the output terminal, and combined with PWM to reinforce output regulation as well as robustness to source/loading variation. The relevant theoretical analysis and design include: an n-stage CMSC model, steady-state/dynamic analysis, power efficiency, source lower bound, voltage conversion ratio, output ripple, capacitance and current source selection, closed-loop control and stability. Finally, the closed-loop CMSC is simulated, and the hardware implementation is realised and tested. All the results are illustrated to show the efficacy of the proposed scheme.
机译:通过将多相工作和脉宽调制(PWM)控制相结合,实现升压DC-DC转换和输出电流,提出了一种新的n阶电流模式多相开关励磁变换器(CMSC)闭环广义方案。规。 CMSC由n倍电压和一个恒流源串联而成。 n倍压器负责升压输出电压,并与多相操作相结合,最多可提供2〜n的电压增益。电流源主要用于在输出端子上提供恒定电流,并与PWM结合以增强输出调节以及对电源/负载变化的鲁棒性。相关的理论分析和设计包括:n级CMSC模型,稳态/动态分析,功率效率,电源下限,电压转换比,输出纹波,电容和电流源选择,闭环控制和稳定性。最后,对闭环CMSC进行了仿真,实现了硬件实现并进行了测试。说明了所有结果以显示所提出方案的有效性。

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