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Analysis of Class DE Current Driven Low $di/dt$ Rectifier

机译:DE类电流驱动的低 $ di / dt $ 整流器的分析

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摘要

Class DE current driven low rectifier satisfies Class E switching condition and low diode current stress, which is no more than the output current. Thus, the switching loss is decreased extremely. In this paper, the Class DE current driven low rectifier is analyzed for any diode-on-duty-ratio. The initial phase angle of the input current, the current and voltage transfer functions, the normalized input resistance and inductance, the normalized diode voltage stress, and the power-output capability are obtained, and clarified as the functions of the diode-on-duty ratio and those of . Moreover, the power conversion efficiency and the circuit design method are shown. The circuit performance has been confirmed by the simulation results and the experimental results. In the simulation and the experiment, the characteristics of the output voltage and the power conversion efficiency against the amplitude of the input current, the load resistance, and the operation frequency have been obtained. In addition, the relationship between the equations, simulation results, and experimental results have been obtained. Theoretical, simulation, and experimental results were in good agreement with each other.
机译:DE类电流驱动的低整流器满足E类开关条件和低二极管电流应力,该应力不超过输出电流。因此,开关损耗大大降低。本文对DE类电流驱动的低整流器的占空比进行了分析。获得输入电流的初始相位角,电流和电压传递函数,归一化的输入电阻和电感,归一化的二极管电压应力以及功率输出能力,并将其澄清为工作二极管的功能比率和的比率。此外,示出了功率转换效率和电路设计方法。仿真结果和实验结果证实了电路性能。在仿真和实验中,获得了针对输入电流幅度,负载电阻和工作频率的输出电压和功率转换效率的特性。另外,还获得了方程,仿真结果和实验结果之间的关系。理论,仿真和实验结果相互吻合。

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