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Asymmetrical Half-Bridge Double-Input DC/DC Converters Adopting Pulsating Voltage Source Cells for Low Power Applications

机译:低功耗应用中采用脉动电压源单元的非对称半桥双输入DC / DC转换器

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摘要

In the renewable hybrid power system, multiple-input converters (MICs) serve as the interface of several sources with a load, and provide the energy to the load simultaneously or individually, which can optimize the utilization of sources, simplify the system configuration, and reduce the overall cost. In the applications with isolated requirement, available MICs usually have complex configuration and numerous transformer windings. In this paper, a family of asymmetrical half-bridge double-input converters (DICs) adopting pulsating voltage source cells (PVSCs) for low power applications is proposed. Compared with available isolated DICs, the proposed converters have advantages of simple architecture, soft-switching realization, and high conversion efficiency. In this paper, the derivation and feasible control strategy for the proposed converters are illustrated. Specifically, the operation principle of DIC composed of two buck PVSCs is analyzed. Finally, theoretical analysis is validated by the experimental results from a 240 W prototype.
机译:在可再生混合动力系统中,多输入转换器(MIC)用作负载与多个电源的接口,并同时或单独向负载提供能量,从而可以优化电源的利用率,简化系统配置以及降低整体成本。在有隔离要求的应用中,可用的MIC通常具有复杂的配置和众多的变压器绕组。本文提出了一种在低功率应用中采用脉动电压源单元(PVSC)的非对称半桥双输入转换器(DIC)系列。与现有的隔离式DIC相比,该转换器具有结构简单,实现软开关和转换效率高的优点。在本文中,说明了所提出的转换器的推导和可行的控制策略。具体来说,分析了由两个降压型PVSC组成的DIC的工作原理。最后,通过240 W原型的实验结果验证了理论分析。

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