A robust multi-loop linear controller for transformer-based single-phase PWM inverter

O. López-Santos, Angie Barbosa-Escobar, G. García
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引用次数: 2

Abstract

This paper proposes the modeling of the single-phase full-bridge inverter as a linear high order system integrating both the input voltage and load variations as disturbances. The model considers the output voltage to duty cycle transfer function (TF) as the plant of the control system when the converter operates using constant frequency Pulse Width Modulation (PWM). A simple nested loop controller is proposed including two Proportional-Integral compensators which ensure a minimum deviation of the desired Root Mean Square (RMS) value and a reduced Total Harmonic Distortion (THD) in the output voltage despite of the harmonic or reactive content of the power load. Both the model and the correct operation of the control system were validated by means of simulation results using resistive, resistive-inductive and nonlinear loads for different power levels demonstrating its advantageous characteristics.
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基于变压器的单相PWM逆变器鲁棒多环线性控制器
本文提出将单相全桥逆变器建模为一个将输入电压和负载变化作为扰动的线性高阶系统。当变换器采用恒频脉宽调制(PWM)时,该模型将输出电压占空比传递函数(TF)作为控制系统的对象。提出了一种简单的嵌套回路控制器,该控制器包括两个比例积分补偿器,该补偿器保证了输出电压的最小偏差(RMS)和降低了输出电压的总谐波失真(THD),无论负载的谐波或无功含量如何。通过电阻、阻感性和非线性负载在不同功率水平下的仿真结果,验证了该模型和控制系统的正确运行,显示了其优越的特性。
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