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A Three-Level dc-dc Converter for Bipolar dc Power Grids: Analysis and Experimental Validation

机译:用于双极性直流电网的三电平dc-dc转换器:分析和实验验证

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The concept of bipolar dc power grids has emerged, mainly due to the improvements in efficiency and offered flexibility when compared with unipolar architectures. Though, concerns of asymmetrical loads affecting voltage unbalances is the key challenge to overcome. In this context, power electronics play an important influence since the features of the topology contribute to define the quality of the bipolar dc power grids. This paper presents the application of a bipolar bidirectional three-level (BB3L) dc-dc converter as a contribution to mitigate the aforementioned concern of bipolar dc power grids. The proposed BB3L dc-dc converter is introduced, and an insightful description of its principle of operation is presented throughout the paper. Since the BB3L dc-dc converter operates with three voltage levels, it is possible to diminish the blocking voltage of the switching devices, representing an important feature of such topology. Additionally, it can operate with the voltage and current variables controlled with the double of the switching frequency, also representing an added value of such topology. The distinct possibilities of operation are presented, both in buck-mode and boost-mode, and an experimental validation is presented to validate the main features of the BB3L dc-dc converter for bipolar dc power grids.
机译:双极性直流电网的概念已经出现,主要是由于效率的提高以及与单极性架构相比所提供的灵活性。尽管,不对称负载会影响电压不平衡的担忧是需要克服的关键挑战。在这种情况下,功率电子器件起着重要的影响,因为拓扑结构的特征有助于定义双极型dc电网的质量。本文介绍了双极性双向三电平(BB3L)dc-dc转换器的应用,以减轻上述对双极性dc电网的担忧。介绍了拟议的BB3L dc-dc转换器,并在全文中对它的工作原理进行了深入的描述。由于BB3L dc-dc转换器在三个电压电平下运行,因此可以减小开关设备的阻断电压,这是这种拓扑结构的重要特征。另外,它可以在开关频率加倍的情况下控制电压和电流变量,这也代表了这种拓扑的附加值。给出了在降压模式和升压模式下的独特工作可能性,并进行了实验验证,以验证用于双极直流电网的BB3L dc-dc转换器的主要功能。

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