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Isolated Single Primary Winding Multiple-Input Converters

机译:隔离式单初级绕组多输入转换器

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Multiple-input converters (MICs) have attracted more attentions because of its simpler structure and less devices. In the traditional isolated MICs, each input source always has a primary winding, sharing a secondary winding. When the number of the input sources increases, the number of the primary windings increases, resulting in complicated structure of the transformer, poor coupling, and large leakage inductors. This paper first introduces the concept of pulsating source cells (PSCs), including pulsating voltage source cells and pulsating current source cells, and the connection rules for the PSCs. Then, series- or parallel-connected PSCs are used to replace the input dc voltage source or input dc current source in the isolated single-input converter, and a family of isolated single primary winding (SPW) MICs is proposed. Compared to the traditional isolated MICs, the transformer has only one primary winding, leading to a simplified structure and ease for manufacturing. Furthermore, the voltage stress of the power switches is reduced. The control method of the proposed isolated SPW MICs is proposed. Finally, a flyback SPW double-input converter is analyzed as an example. The operation principle and control method are discussed and a prototype is built to demonstrate the feasibility of this topology.
机译:多输入转换器(MIC)由于其结构更简单,设备更少而受到了更多关注。在传统的隔离式MIC中,每个输入源始终具有一个初级绕组,共享一个次级绕组。当输入源的数量增加时,初级绕组的数量也会增加,从而导致变压器结构复杂,耦合不良和漏感大。本文首先介绍脉动源单元(PSC)的概念,包括脉动电压源单元和脉动电流源单元,以及PSC的连接规则。然后,使用串联或并联的PSC来代替隔离式单输入转换器中的输入直流电压源或输入直流电流源,并提出了一系列隔离式单初级绕组(SPW)MIC。与传统的隔离式MIC相比,该变压器仅具有一个初级绕组,从而简化了结构并易于制造。此外,减小了功率开关的电压应力。提出了提出的隔离式SPW MIC的控制方法。最后,以反激式SPW双输入转换器为例进行分析。讨论了其工作原理和控制方法,并建立了原型,以证明该拓扑的可行性。

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