Practical Approach to Digital Control System of Cooperative Active Power Filter Design

V. Zamaruiev, B. Styslo
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Abstract

The paper considers a digital control system (DCS) of a cooperative active power filter (APF), developed on the basis of the STM32 microcontroller family. The features of DCS's work are analyzed. The results of physical modeling of the DCS channels are presented. It is shown that the resources of a general-purpose microcontroller are sufficient to solve a DCS objectives of cooperative APF. The restrictions on the order of the DCS's digital filter are considered. The order of the filter determined the frequency of the highest harmonic that can be resolved, on the other hand, the time it takes to calculate its output signal. The computation time determines both the physical feasibility of the filter, which is determined by its ratio with the PWM period, and the DCS error associated with the phase shift of the input and output signals of the filter. The designing a DCS of APF with taking into account these constraints are considered.
协同有源电力滤波器数字控制系统设计的实用方法
本文研究了一种基于STM32系列单片机的协同有源电力滤波器(APF)数字控制系统(DCS)。分析了DCS的工作特点。给出了DCS通道的物理建模结果。结果表明,一个通用微控制器的资源足以解决协同APF的DCS目标。考虑了DCS数字滤波器阶数的限制。滤波器的阶数决定了能被分解的最高谐波的频率,另一方面,也决定了计算其输出信号所需的时间。计算时间既决定了滤波器的物理可行性(由其与PWM周期的比值决定),也决定了与滤波器输入输出信号相移相关的DCS误差。研究了考虑这些约束条件的有源滤波器DCS设计。
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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