Switching Instances and Permutations for State-Space Modeling of the Dual Active Half Bridge Converter

Youssef A. Fahmy, M. Preindl
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Abstract

This paper develops a model of the Dual Active Half Bridge (DAHB) converter that is built up from four switching functions. These functions describe the input signals to the gates of the power transistors. The normalized signals are converted to voltage values which are then further manipulated to produce a state space model of the inductor and capacitor voltages and currents, two key sets of parameters in describing the DAHB. The model is then generalized to describe all possible switching states, which are defined by the relative order of the turn-on and turn-off switching instances. A matrix-based description of the 24 identified modes is created in which two pairs of binary matrices, along with the inputs and states are used to identify circuit behavior in each mode. Finally, the state space model is formalized across the different modes before being validated against a Simulink-PLECS circuit model.
双有源半桥变换器状态空间建模的开关实例和排列
本文建立了一个由四个开关功能组成的双有源半桥(DAHB)变换器模型。这些函数描述了功率晶体管门的输入信号。归一化信号被转换为电压值,然后进一步操纵以产生电感和电容器电压和电流的状态空间模型,这是描述DAHB的两个关键参数集。然后将该模型推广到描述所有可能的开关状态,这些状态由开关实例的相对顺序定义。创建了基于矩阵的24种已识别模式的描述,其中两对二进制矩阵以及输入和状态用于识别每种模式下的电路行为。最后,在对Simulink-PLECS电路模型进行验证之前,对不同模式的状态空间模型进行形式化。
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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