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A Zero-Voltage Switching Three-Port Isolated Full-Bridge Converter

机译:零电压切换三端口隔离的全桥转换器

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This paper proposes an integrated single-stage three-port dc-dc converter. The proposed converter interfaces two bidirectional source/storage ports, and a galvanically isolated loading port. The power topology is based on the integration of a bi-phase boost pre-regulator stage into a phase-shift controlled full-bridge converter. The four bridge switches play the combined role of realizing synchronous boost conversion, and driving the transformer. The proposed topology is conditionally able to achieve zero-voltage switching of all bridge switches. Compared to the cascaded converter approach, this topology alleviates the cost overhead associated with introducing a switching leg for boost operation, and saves the switching loss it would exhibit. A constant-frequency switching scheme is adopted that presents two degrees of freedom necessary for proper control. The duty-cycle of the two phase-legs of the bridge is varied to control energy flow in the boost section, while the relative phase-shift between the legs is utilized to regulate the power pushed to the loading port. The operation of the topology is verified using an experimental 1kW prototype, designed to handle a photovoltaic source, a storage battery bank, and a regulated dc load.
机译:本文提出了一个集成的单级三端口DC-DC转换器。所提出的转换器接口两个双向源/存储端口,以及电流隔离的装载端口。功率拓扑基于双相提升预调节器级的集成到相移控制的全桥转换器中。四个桥接器开关播放了实现同步升压转换的综合作用,并驱动变压器。所提出的拓扑结构有条件地能够实现所有桥接开关的零电压切换。与级联转换器方法相比,这种拓扑可以减轻与引入开关腿进行升压操作相关的成本开销,并节省它将展出的开关损耗。采用恒定频率切换方案,其呈现适当控制所需的两度自由度。桥的两个相腿的占空比变化以控制升压部分中的能量流,而腿部之间的相对相位偏移用于调节推动到装载端口的动力。使用实验1KW原型验证拓扑的操作,该原型设计用于处理光伏源,蓄电池组和调节的DC负载。

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