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Analysis and proposal of an isolated DC/AC system using three-state switching cell

机译:使用三态开关单元的隔离式DC / AC系统的分析和建议

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This paper presents an isolated dc/ac system using the three-state switching cell (3SSC). This converter is meant to operate as interface converter for microgrid or stand-alone applications in conjunction with a small power generating units. This system consists in two power processing stages. The first one is a dc/dc boost converter based in the 3SSC and the second one is a classical voltage source inverter (VSI) based in the full bridge inverter. The mentioned cell added in the dc/dc stage allows the use of only two windings in the isolation transformer, as well as, the series connection of only one dc current blocking capacitor to avoid its saturation. Other relevant characteristics of the system are, the blocking voltage across the controlled switches in the dc/dc stage is low, which allows the utilization of lower drain-to-source conduction resistances (RDSon) MOSFETs, and the current through the autotransformer winding is almost continuous minimizing the hysteresis losses on the magnetic core. The operating principle of the proposed system has been analyzed in detail. In order to verify the feasibility of this topology, experimental waveforms are shown for a 1kW assembled prototype.
机译:本文提出了一种使用三态开关单元(3SSC)的隔离式dc / ac系统。该转换器旨在与小型发电机组一起用作微电网或独立应用程序的接口转换器。该系统包括两个功率处理阶段。第一个是基于3SSC的dc / dc升压转换器,第二个是基于全桥逆变器的经典电压源逆变器(VSI)。提到的在dc / dc级中添加的单元允许在隔离变压器中仅使用两个绕组,以及仅串联一个dc电流阻塞电容器以避免其饱和。系统的其他相关特征是,dc / dc阶段中受控开关两端的阻断电压很低,从而可以利用较低的漏-源导通电阻(R DSon )MOSFET,并且通过自耦变压器绕组的电流几乎是连续的,从而将磁芯上的磁滞损耗降至最低。已对所提出系统的工作原理进行了详细分析。为了验证这种拓扑的可行性,显示了1kW组装原型的实验波形。

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