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Time-domain simulation of power electronics circuits using statevariable quadratic extrapolations

机译:电力电子电路的时域仿真,使用状态变量二次外推法

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A new stepwise time-domain analysis technique for power electronics circuits is presented. At each simulation step the rate of change of each state variable is determined by the corresponding reactive element parasitic resistance and state value obtained after performing a modified nodal analysis (MNA). A quadratic state trajectory description for each reactive element is formulated. To ensure the correct topological operation of the power stage, the algorithm monitors the position and checks the validity of all switches, requiring no a priori knowledge of their switching relationships. All computations require simple algebraic manipulations of resistive networks only. An example of simulating the response of a zero-voltage-transition PWM buck converter is illustrated. The results are favorably compared to the previous method using constant nodal voltage approximation, experimental measurements, and the commercial software PSpice
机译:提出了一种用于电力电子电路的新的逐步时域分析技术。在每个模拟步骤中,每个状态变量的变化率由相应的电抗元件寄生电阻和在执行修改的节点分析(MNA)之后获得的状态值确定。建立了每个电抗元件的二次状态轨迹描述。为了确保功率级正确的拓扑操作,该算法监视位置并检查所有开关的有效性,无需先验知识即可了解其开关关系。所有计算仅需要电阻网络的简单代数运算。举例说明了模拟零电压转换PWM降压转换器的响应的示例。与使用恒定节点电压近似,实验测量和商用软件PSpice的先前方法相比,该结果具有优势

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