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A low capacitance single-phase AC-DC converter with inherent power ripple decoupling

机译:具有固有功率纹波去耦的低电容单相AC-DC转换器

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摘要

This paper proposes a new single-phase AC-DC conversion topology with inherent power ripple decoupling, based on the combination of a PWM H-bridge inverter, an AC side LC filter and a ZVS line commutated H-bridge. A capacitor on the AC side is used as power decoupling element. By appropriate selection of the capacitor voltage, the power ripple at twice the AC frequency can be cancelled from the DC side instantaneous power, achieving negligible DC voltage ripple using a smaller total capacitance compared to traditional solutions.udRecently, several solutions using the concept of Ripple-Port have been proposed that reduce the overall capacitance. However, they usually need at least a dedicated PWM half-bridge leg, adding switching loss, and a separate LC tank. Instead, the proposed topology integrates the ripple compensation in the AC/DC conversion stage, exploiting the AC filter and minimising additional loss thanks to the ZVS of the additional H-bridge.udThe concept of the steady state operation of the proposed converter is described analytically and validated in simulation using MATLAB Simulink and PLECS.udThis work is being developed at University of Nottingham within the framework of project SENSIBLE.
机译:本文基于PWM H桥逆变器,AC侧LC滤波器和ZVS线路换向H桥的组合,提出了一种具有固有功率纹波去耦的新型单相AC-DC转换拓扑。交流侧的电容器用作电源去耦元件。通过适当选择电容器电压,可以从直流侧瞬时功率中消除交流频率两倍的电源纹波,与传统解决方案相比,使用较小的总电容即可实现可忽略的直流电压纹波。已经提出了降低整体电容的纹波端口。但是,它们通常至少需要一个专用的PWM半桥脚,这会增加开关损耗,并需要一个单独的LC储能器。取而代之的是,拟议的拓扑在AC / DC转换阶段集成了纹波补偿,利用了交流滤波器,并通过附加的H桥的ZVS使附加损耗最小化。 ud描述了拟议的转换器的稳态工作原理使用MATLAB Simulink和PLECS在仿真中进行了分析和验证。 ud这项工作是由诺丁汉大学在SENSIBLE项目框架内进行的。

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