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Sigmoid Function Model for a PFM Power Electronic Converter

机译:PFM电力电子转换器的S型函数模型

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摘要

A power electronic converter is a switching system; the key to modeling it is how to describe the interaction between the discrete switch variables and the continuous state variables in a unified model. A power electronic converter modeling method based on sigmoid functions is proposed. Since the sigmoid function is continuous, smooth, differentiable, and saturated at a certain value, a sigmoid function with a large steepness factor is used to approximate the switching process of the switch; the converter is transformed from a switching system to a continuous system so that nonlinear continuous system analysis and design methods can be directly applied to the converter control system. Sigmoid function equivalent circuit models for several typical inverter and rectifier circuits are provided. A half-bridge LLC resonant converter is selected as an example, and its sigmoid function model is constructed and subsequently validated through simulation and experimentation. The results show that the constructed model is in good agreement with the circuit simulation and experimental results. The mathematical expression of the model has a simple and unified structure and definite physical meaning and is a high-accuracy large-signal continuous model with universal significance.
机译:功率电子转换器是一种开关系统;建模的关键是如何在统一模型中描述离散开关变量和连续状态变量之间的相互作用。提出了一种基于S形函数的电力电子变换器建模方法。由于S形函数是连续的,平滑的,可微的并且在一定值处饱和,因此使用具有大的陡度因子的S形函数来近似开关的切换过程。转换器从切换系统转换为连续系统,因此非线性连续系统分析和设计方法可以直接应用于转换器控制系统。提供了几种典型的逆变器和整流器电路的S形等效电路模型。以一个半桥LLC谐振变换器为例,构建其S形函数模型,并通过仿真和实验验证。结果表明,所建立的模型与电路仿真和实验结果吻合良好。该模型的数学表达式结构简单统一,物理意义明确,是一种具有普遍意义的高精度大信号连续模型。

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