DYNAMIC MODEL OF THE RESONANT CONVERTER FOR INFLUENCE FROM THE SUPPLY SIDE

G. Pavlov, A. Obrubov, I. Vinnychenko
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Abstract

In the paper, a discrete dynamic model of a full-bridge resonant converter with a symmetrical operating mode has been obtained, which describes the resonant converter as a transfer link with an supply voltage input side and a load current output side. The dynamic model is based on a linear mathematical model of the resonant converter built according to the superposition principle. The structure of the resonant converter with the processes outline function is given and analyzed. The structure of the discrete dynamic model of the resonant converter of the nth order is presented. It is proved that the transfer function of the discrete dynamic model for the outline function can be determined by the transfer function of the continuous system. The resulting dependencies describing the discrete transfer functions of the resonant converter are used to obtain the discrete dynamic model of the double-circuit transformer resonant converter in a synchronous rectifier. For this, the sequence of actions is defined: definition of the transfer function of the continuous dynamic model; obtaining the system of equations in vector-matrix form describing electromagnetic processes in the converter; definition of the system of discrete equations; definition of the transfer function of the circuit. The obtained theoretical results were verified by means of simulation modeling of the considered double-circuit resonant converter. The proposed dynamic model makes it possible to analyze the influence of instability and low-frequency fluctuations of the supply voltage of the resonant converter on the output values. The presented results can be used in the development and improvement of single- or multi-circuit bridge high-frequency resonant converters as the secondary power sources and converters used in ship demagnetization systems. References 25, figures 8, tables 2.
谐振转换器的动态模型,以消除来自电源端的影响
本文获得了具有对称工作模式的全桥谐振转换器的离散动态模型,该模型将谐振转换器描述为一个具有电源电压输入端和负载电流输出端的传输链路。该动态模型基于根据叠加原理建立的谐振转换器线性数学模型。给出并分析了具有过程轮廓函数的谐振转换器结构。给出了 n 阶谐振转换器离散动态模型的结构。证明了大纲函数离散动态模型的传递函数可以由连续系统的传递函数确定。由此得到的描述谐振变换器离散传递函数的依赖关系用于获得同步整流器中双回路变压器谐振变换器的离散动态模型。为此,定义了一系列操作:定义连续动态模型的传递函数;获得描述转换器电磁过程的矢量矩阵形式方程组;定义离散方程组;定义电路的传递函数。通过对所考虑的双回路谐振转换器进行仿真建模,验证了所获得的理论结果。所提出的动态模型可以分析谐振转换器电源电压的不稳定性和低频波动对输出值的影响。所提出的结果可用于开发和改进单回路或多回路桥式高频谐振转换器,作为船舶消磁系统中使用的二次电源和转换器。参考文献 25,图 8,表 2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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