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State Space Modeling and Implementation of a New Transformer Based Multilevel Inverter Topology with Reduced Switch Count

机译:减少开关数量的新型基于变压器的多级逆变器拓扑的状态空间建模和实现

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This paper presents a new transformer based multilevel inverter, with a novel pulse width modulation scheme to achieve seven-level inverter output voltage. The proposed inverter switching pattern consists of three fundamental frequency sinusoidal reference signals with an offset value, and one high frequency triangular carrier signal. This switching scheme has been implemented using an 8-bit Xilinx SPARTAN-3E field programmable gate array based controller. In addition, the state space model of the proposed inverter is developed. The significant features of the proposed topology are: reduction of the power switch count and the gate drive power supply unit, the provision of a galvanic isolation between load and sources by a centre tap transformer. An exhaustive comparison has been made of the existing multilevel inverter topologies and the proposed topology. The performances of the proposed topology with resistive, resistive-inductive loads are simulated in a MATLAB environment and validated experimentally on a laboratory prototype.
机译:本文提出了一种新的基于变压器的多电平逆变器,其具有新颖的脉宽调制方案,可实现七电平逆变器输出电压。提出的逆变器开关模式包括三个具有偏移值的基频正弦参考信号和一个高频三角载波信号。此开关方案已使用基于Xilinx SPARTAN-3E现场可编程门阵列的8位控制器实现。另外,开发了所提出的逆变器的状态空间模型。提出的拓扑的主要特征是:减少了电源开关数量和栅极驱动电源单元,通过中心抽头变压器在负载和电源之间提供了电流隔离。已对现有的多电平逆变器拓扑和建议的拓扑进行了详尽的比较。在MATLAB环境中模拟了所提出的具有电阻性,电阻性-电感性负载的拓扑的性能,并在实验室原型上进行了实验验证。

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