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A three-phase inverter circuit using half-bridge cells and T-NPC for medium-voltage applications

机译:使用半桥电池和T-NPC的三相逆变器电路,用于中压应用

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摘要

Three-phase single DC-source based multilevel inverter topologies play a pivotal role in industrial applications due to the reduced number of components and higher efficiency. This paper emphasizes the inverter for medium-voltage applications that employ a conventional three-phase T-type structure (T-NPC). The primary circuit of the proposed configuration consists of a T-NPC structure connected to the half-bridge cells at the top and the bottom sides of each phase. The secondary circuit consists of DC-link capacitors whose voltage balancing is attained through a separate voltage balancing circuit (VBC). Using the proposed configuration, the number of components and independent DC supplies are reduced compared with the conventional topologies such as a neutral point clamped (NPC) inverter, a flying capacitor (FC) inverter, and a cascaded H-bridge (CHB) inverter for the same number of output voltage levels. Hence, the proposed topology results in the reduction of weight, volume, and power losses of the inverter. A sine-triangle comparison method is employed in the field programmable gate array (FPGA) platform to generate the firing pulses of the circuit switches. The effectiveness of the proposed topology is verified with simulation studies and is experimentally validated with a scaled-down prototype.
机译:基于三相单DC源的多级逆变器拓扑由于减少数量和更高的效率,在工业应用中发挥着关键作用。本文强调了采用常规三相T型结构(T-NPC)的中压应用的逆变器。所提出的配置的主电路包括连接到顶部和每个阶段的底侧的半桥单元的T-NPC结构。辅助电路由直流链路电容器组成,其通过单独的电压平衡电路(VBC)实现电压平衡。使用所提出的配置,与诸如中性点钳位(NPC)逆变器,飞行电容器(FC)逆变器等传统拓扑相比,减少了组件数和独立的DC供应量,以及级联的H桥(CHB)逆变器输出电压电平相同。因此,所提出的拓扑导致逆变器的重量,体积和功率损耗的减少。在现场可编程门阵列(FPGA)平台中采用正弦三角比较方法,以产生电路开关的烧制脉冲。通过模拟研究验证了所提出的拓扑的有效性,并用缩小的原型进行实验验证。

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