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Multirate PWM balance method for the efficient field-circuit coupled simulation of power converters

机译:多速率PWM平衡方法用于功率转换器的高效场电路耦合仿真

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The field-circuit coupled simulation of switch-mode power converters with conventional time discretization is computationally expensive since very small time steps are needed to appropriately account for steep transients occurring inside the converter, not only for the degrees of freedom (DOFs) in the circuit, but also for the large number of DOFs in the field model part. An efficient simulation technique for converters with idealized switches is obtained using multirate partial differential equations, which allow for a natural separation into components of different time scales. This paper introduces a set of new PWM eigenfunctions which decouple the systems of equations and thus yield an efficient simulation of the field-circuit coupled problem. The resulting method is called the multirate PWM balance method.
机译:具有传统时间离散的开关模式功率转换器的场电路耦合仿真在计算上很昂贵,因为需要非常小的时间步长来适当地考虑转换器内部发生的陡峭瞬变,而不仅是电路中的自由度(DOF) ,也适用于现场模型部分中的大量自由度。使用多速率偏微分方程,可以获得具有理想开关的转换器的有效仿真技术,该方程可自然分离为不同时标的分量。本文介绍了一组新的PWM特征函数,这些函数解耦方程组,从而对场电路耦合问题进行了有效的仿真。所得方法称为多速率PWM平衡方法。

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