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Analysis and Design of a Bidirectional Cycloconverter-Type High Frequency Link Inverter with Natural Commutated Phase Angle Control

机译:具有自然换相相位角控制的双向循环变换器式高频环节逆变器的分析与设计

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In this paper a cycloconverter-type high frequency transformer link inverter with a reduced switch count is analyzed and designed. The proposed topology consists of an H-bridge inverter at the transformer's primary side and a cycloconverter with three bidirectional switches at the secondary. All of the switches of the cycloconverter operate in non-resonant zero voltage and zero current switching modes. To overcome a high voltage surge problem resulting from the transformer leakage inductance, phase angle control based on natural commutation is employed. The effectiveness of the proposed inverter is verified by constructing s 750W prototype. Experimentally, the inverter is able to supply a near sinusoidal output voltage with a total harmonic distortion of less than 1%. For comparison, a PSpice simulation of the inverter is also carried out. It was found that the experimental results are in very close agreement with the simulation.
机译:本文分析并设计了一种开关量减少的环变式高频变压器环节逆变器。拟议的拓扑结构由位于变压器初级侧的H桥逆变器和位于次级侧的具有三个双向开关的循环转换器组成。循环转换器的所有开关均以非谐振零电压和零电流开关模式工作。为了克服由变压器漏感引起的高压浪涌问题,采用了基于自然换相的相角控制。通过构建750W原型验证了所提出逆变器的有效性。实验上,逆变器能够提供接近正弦的输出电压,总谐波失真小于1%。为了进行比较,还对逆变器进行了PSpice仿真。发现实验结果与仿真非常吻合。

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