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Decoupled power solution for dual-input isolated dc-dc converters using four quadrants integrated transformers (FQIT)

机译:使用四象限集成变压器的双输入隔离DC-DC转换器的解耦功率解决方案(FQIT)

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A common limitation of power coupling effect in some known multiple-input dc-dc converters has been addressed in many literatures. In order to overcome this limitation, a new concept for decoupling the primary windings in the integrated multiple-winding transformers based on 3-dimensional (3D) space orthogonal flux is proposed in this paper. And thus a new geometry core and relative winding arrangements are proposed in accordance with the orthogonal flux decoupling technology. Due to the four secondary windings are arranged in a quadratic pattern at the base core plate with the two perpendicular primary windings, a name of “four quadrants integrated transformers” (FQIT) is therefore given to the proposed construction. Since the two primary windings are uncoupled, the FQIT allows the two input power stages to transfer the energy into the output load simultaneously or at any time-multiplexing scheme, which can optimize the utilization of diversified power energy sources, simplify the system structure, improve the flexibility and reduce the overall cost, so they are attractive for the hybrid renewable power system. Section IV initiates a discussion for the advantages of the FQIT. In order to verify the feasibility of the FQIT in multiple-input converter, a dual-input isolated boost dc-dc converter employing with the FQIT is designed and tested. The results have excellently demonstrated that the two input power stages can be operated independently and the correctness of all the analysis in the paper.
机译:在许多文献中已经解决了一些已知的多输入DC-DC转换器中的电力耦合效果的公共限制。为了克服这种限制,本文提出了一种基于三维(3D)空间正交通量的集成多绕组变压器中的初级绕组去耦的新概念。因此,根据正交磁通去耦技术提出了一种新的几何核心和相对绕组布置。由于四个次级绕组以底座芯板的二次图案布置,具有两个垂直的初级绕组,因此向所提出的结构提供“四象限集成变压器”(FQIT)的名称。由于两个初级绕组是未耦合的,因此FQIT允许两个输入电源级同时或以任何时间复用方案将能量传送到输出负载中,这可以优化多样化功率能源的利用,简化系统结构,提高灵活性并降低总体成本,因此它们对混合可再生电力系统具有吸引力。第四节启动了讨论FQIT的优势。为了验证FQIT在多输入转换器中的可行性,设计并测试了使用FQIT采用的双输入隔离升压DC-DC转换器。结果表明,两种输入电源级可以独立运行,纸张中所有分析的正确性。

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