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Small-Signal Models of Resonant Converter With Consideration of Different Duty-Cycle Control Schemes

机译:考虑不同占空比控制方案的谐振变换器的小信号模型

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摘要

Duty-cycle control is a widely used control method of resonant converters. In this article, the existing model of duty-cycle controlled resonant converters is found to have discrepancy compared with the simulation and experimental results. The reason behind is investigated, showing the phase change in the output voltage of the inverter bridge caused by the duty-cycle perturbation was ignored in the existing model. The phase change law is highly dependent on the duty-cycle scheme used, which is further determined by the forms of the carriers and the switching sequences of the resonant converters. With this consideration, improved models of both full-bridge and half-bridge resonant converters with different duty-cycle control schemes are rederived. It is revealed that different duty-cycle control schemes lead to different phase curves of the duty-cycle-to-output-voltage transfer functions, therefore care should be taken when selecting the appropriate duty-cycle control scheme. In the end, a series-series compensated wireless power transfer system is built to verify the validity of the proposed models.
机译:占空比控制是一种广泛使用的谐振转换器的控制方法。在本文中,与模拟和实验结果相比,发现现有的占空比控制谐振转换器具有差异。研究了后面的原因,显示在现有模型中忽略了由占空比扰动引起的逆变器桥的输出电压的相变。相变法高度依赖于所用的占空比方案,其通过载波的形式和谐振转换器的开关序列进一步确定。通过此考虑,重新生化具有不同占空比控制方案的全桥和半桥谐振转换器的改进模型。据透露,不同的占空比控制方案导致占空比输出电压传递函数的不同相位曲线,因此在选择适当的占空比控制方案时应注意。最后,构建了一个系列系列补偿无线电力传输系统以验证所提出的模型的有效性。

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