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Circuit Topology and Operation of a Step-Up Multilevel Inverter With a Single DC Source

机译:具有单个直流电源的升压多电平逆变器的电路拓扑和操作

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This study is an attempt to present a multilevel inverter based on a modular structure with a single dc source. This inverter is a switched-capacitor topology, which controls the charging as well as the discharging of the capacitors in the predetermined time intervals. The most important attribute of this multistage structure is the multiple charging capacities of the capacitors at each stage compared with those of the previous stages, which can ultimately increase the output voltage of the low input dc voltage source. Different combinations of these capacitors will be discharged across the load to generate a high-level staircase ac voltage waveform. The high number of switching states provides different paths for capacitors to achieve a self-balancing capability. The low switching frequency and the elimination of transformer are among the advantages of the proposed topology. Compared with other topologies, the number of semiconductor devices and capacitors is also reduced largely. The simulation results and the laboratory test setup of a 49-level inverter using DSP TMS320F28335 are presented to verify the analysis.
机译:这项研究试图提出一种基于具有单个直流电源的模块化结构的多电平逆变器。该逆变器是一种开关电容器拓扑,它以预定的时间间隔控制电容器的充电和放电。这种多级结构的最重要属性是,与前几级相比,每级电容器的多个充电容量最终会增加低输入直流电压源的输出电压。这些电容器的不同组合将在整个负载上放电,以生成高电平阶梯交流电压波形。大量的开关状态为电容器提供了不同的路径,以实现自平衡能力。低开关频率和消除变压器是所提出的拓扑的优点。与其他拓扑相比,半导体器件和电容器的数量也大大减少。给出了使用DSP TMS320F28335的49级逆变器的仿真结果和实验室测试设置,以验证分析结果。

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