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Three-phase PWM inverter system under typical electric power disturbances with a feedforward control compensation

机译:三相PWM逆变器系统下典型电力干扰逆向控制补偿

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In the last fourteen years the power quality concept and its related issues have gained a lot of attention. Mainly in industrial sites where critical loads are supplied with poor electric power quality, more attention is dedicated to this area. This paper presents a feedforward control technique used in a three-phase PWM inverter In order to compensate any variation on the AC output waveforms (voltage & current), under typical electric power disturbances, such as sags or swells. Voltage sag is a momentary decrease in the rms voltage values and swell is a momentary increase in the rms voltage values. The IGBT PWM inverter system detects those disturbances and a feedforward control compensates to maintain the output quantities under nominal output values. Analysis and simulation results are presented based on a 220 V, 5 kVA, three-phase PWM inverter. Furthermore, experimental results are carried out to illustrate the variation on the output waveforms due to two-phase voltage sags and/or swells. It is also proposed the use of a DSP (digital signal processor) to implement the approach of a feedforward control technique on ASD or UPS systems.
机译:在过去的十四年里,力量质量概念及其相关问题取得了很大的关注。主要是在工业部位,提供临界负荷的电力质量差,更多的关注致力于该地区。本文提出了一种在三相PWM逆变器中使用的前馈控制技术,以补偿AC输出波形(电压和电流)的任何变化,如典型的电力干扰,如凹凸或膨胀。电压凹陷是RMS电压值的瞬时降低,并且膨胀是RMS电压值的瞬时增加。 IGBT PWM逆变器系统检测这些干扰,并且前馈控制补偿以在标称输出值下保持输出量。基于220 V,5 kVA,三相PWM逆变器提出了分析和仿真结果。此外,执行实验结果以说明由于两相电压凹凸和/或膨胀而导致的输出波形的变化。还提出了使用DSP(数字信号处理器)来实现ASD或UPS系统上的前馈控制技术的方法。

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