首页> 外文会议>Electric Vehicle Conference (IEVC), 2012 IEEE International >A novel grid-connected multi-input boost converter for HEVs: Design and implementation
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A novel grid-connected multi-input boost converter for HEVs: Design and implementation

机译:新型混合动力车并网多输入升压转换器:设计与实现

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摘要

In plug-in hybrid electric vehicles, multi-input boost converters became widely used to enhance the stability and reliability. However, conventional boost converters have difficulty of low efficiency and the implementation size problem as well as the cost. To improve these drawbacks, this paper proposes a novel modularized multi-input bridgeless boost converter that interfaces the hybrid AC/DC power sources to the vehicle power train. In this study, the multi-input structure with bridgeless high frequency boost converter is proposed in order to reduce the size of the passive components with high efficiency compared to other topologies. The proposed topology is compared with bridge boost converter and Bridgeless power factor correction converter topologies in order to examine its performances. The converter topologies and their controller are designed and investigated. Furthermore, the proposed topology is experimentally validated with results obtained from 60-kW prototype that has been built and tested in our laboratory based on TMS320F28335 DSP. The results have demonstrated that the proposed topology is more efficient than other converter topologies to achieve great size reduction with high performance.
机译:在插电式混合动力汽车中,多输入升压转换器已广泛用于增强稳定性和可靠性。然而,常规的升压转换器具有效率低和实施尺寸问题以及成本的困难。为了改善这些缺点,本文提出了一种新颖的模块化多输入无桥升压转换器,该转换器将交流/直流混合电源连接到车辆动力总成。在这项研究中,提出了一种具有无桥高频升压转换器的多输入结构,以便与其他拓扑相比以高效率减小无源元件的尺寸。将拟议的拓扑与桥式升压转换器和无桥功率因数校正转换器的拓扑进行比较,以检查其性能。设计并研究了转换器拓扑及其控制器。此外,通过从60 kW原型中获得的结果对实验中提出的拓扑进行了实验验证,该原型已在我们的实验室中基于TMS320F28335 DSP进行了构建和测试。结果表明,所提出的拓扑比其他转换器拓扑更有效,以实现高性能的大幅减小。

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