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Closed Analytical Model of a 20 kV Output Voltage, 800 W Output Power Series-Parallel-Resonant Converter with Walton Cockroft Multiplier

机译:20 kV输出电压的封闭分析模型,800 W输出功率串联 - 并联 - 谐振转换器,带Walton Cockroft倍增器

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A closed analytical model of an asymmetrically switched class D converter with series-parallel-resonant (LCC) tank and three-stage Walton Cockroft multiplier featuring output voltage adjustable from zero to 20 kV and a maximum output power of 800 W is presented. The converter circuit is briefly described. A model for the dynamic behaviour of the Walton Cockroft multiplier is developed via state space modelling in the discrete time domain, which then allows itself to be approximated as a low-pass filter with parameters that are a function of the converter operating point. The analytical model of the converter is based on the extended describing function and the generalised averaging technique. It is simulated using MATLAB and the results are compared to both simulation results using a switched model with SIMPLORER and measurements on the converter in operation. Agreements of simulated and experimental data support the models validity. The converter is controlled digitally with a Xilinx Spartan-3E FPGA.
机译:具有串联 - 并联 - 谐振(LCC)罐和三级Walton Cockroft乘法器的闭合分析模型,提供从零到20kV调节的输出电压和800W的最大输出功率。简要描述转换器电路。 Walton Cockroft乘法器的动态行为模型是通过在离散时域中的状态空间建模开发的,然后允许自己近似为低通滤波器,其中参数是转换器操作点的函数。转换器的分析模型基于扩展描述功能和广义平均技术。它使用MATLAB模拟,并将结果与​​仿真结果进行比较,使用简单的转换器上的转换器和测量结果进行仿真结果。模拟和实验数据的协议支持模型有效性。转换器用Xilinx Spartan-3E FPGA以数字方式控制。

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