Simulation of active power filters using switching functions

G. Joós
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引用次数: 4

Abstract

The operation of static power converters used in active filters can be simulated by means of widely available circuit simulation software packages such as PSpice. In these studies, converters are usually modeled as a set of real or idealized switches, which may result in long execution times and possible convergence problems, particularly in complex circuits. This paper proposes the use of macromodels to simulate active filters. The macromodels are based on converter switching functions rather than actual circuit components, and they are well suited for steady state and large signal transient analysis at the system level. In this approach, the converters are simulated as multiport networks avoiding the physical nonlinear micromodels associated with power switches. Computer memory and execution times required for the simulation of the power circuit are thereby significantly reduced. The procedure also allows rapid design of filter components, in particular passive elements such as inductors and capacitors. Complete examples of typical shunt filters are given to illustrate the effectiveness of the proposed models.
利用开关函数模拟有源电力滤波器
使用PSpice等广泛使用的电路仿真软件包可以模拟用于有源滤波器的静态功率变换器的工作。在这些研究中,转换器通常被建模为一组真实的或理想的开关,这可能导致较长的执行时间和可能的收敛问题,特别是在复杂的电路中。本文提出使用宏模型来模拟有源滤波器。宏模型是基于变换器开关函数而不是实际电路元件,它们非常适合于系统级的稳态和大信号暂态分析。在这种方法中,转换器被模拟成多端口网络,避免了与功率开关相关的物理非线性微模型。因此大大减少了模拟电源电路所需的计算机内存和执行时间。该程序还允许快速设计滤波器元件,特别是电感和电容器等无源元件。给出了典型并联滤波器的完整示例,以说明所提模型的有效性。
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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