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A Dynamical Model of Full Bridge LLC Resonant Converter Which Incorporates Power Loss Coefficients for Controller Design

机译:包含功率损耗系数的全桥LLC谐振变换器的动力学模型用于控制器设计

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DC-DC converters play important role in smart grids and electric vehicles. A practical model is needed for effective controller design of full bride LLC resonant converter, a topology of DC-DC converter. This paper proposes a new practical model of full bridge LLC resonant converter which incorporates power loss coefficients. Power losses due to MOSFET on-resistance, equivalent serial resistance (ESR), and voltage drop of diode are expressed using power loss coefficients. A practical linear model in state space equation is obtained using Jacobian matrices. A physical model inSimulink/Simscape Electrical®environment is builtbased on a prototype of LLC converter which has nominal input voltage of 120 V, nominal output voltage of 240 V, and nominal switching frequency of 100 kHz. In order to validate the proposed practical model, transient responses comparison between the practical linear model and the physical model was carried out through computer simulation. From the simulation results, it can be concluded that the proposed practical linear model represents well dynamics of the physical model. Therefore, the proposed practical linear model can be used for controller design in an effective manner based on analytical approach.
机译:DC-DC转换器在智能电网和电动汽车中起着重要作用。对于全新娘LLC谐振转换器(DC-DC转换器的拓扑)的有效控制器设计,需要一个实用的模型。本文提出了一种新的实用模型,其中包含功率损耗系数的全桥LLC谐振变换器。 MOSFET导通电阻,等效串联电阻(ESR)和二极管的压降引起的功率损耗用功率损耗系数表示。使用雅可比矩阵获得状态空间方程中的实用线性模型。 Simulink / Simscape Electrical中的物理模型 ® 该环境基于LLC转换器的原型构建,该转换器的标称输入电压为120 V,标称输出电压为240 V,标称开关频率为100 kHz。为了验证所提出的实用模型,通过计算机仿真对实用线性模型和物理模型之间的瞬态响应进行了比较。从仿真结果可以得出结论,提出的实用线性模型代表了物理模型的良好动力学。因此,基于解析方法,所提出的实用线性模型可以有效地用于控制器设计。

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