Voltage Sag Compensation in High-Quality AC/DC Converters Using the Single-Phase DQ Theory

J. Lira, C. Nuñez, V. Cárdenas, R. Alvarez
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引用次数: 8

Abstract

Voltage sags are one of the most important power quality problems, affecting industrial and commercial customers. Industrial processes are particularly sensitive to relatively minor voltage sags. Utilities have been improved their fault-recovery capabilities, however it is still impossible to eliminate faults in the systems. Therefore, customers will have to improve the ride-through capability of the system equipment in their facilities. This paper presents the application of the single-phase DQ theory as a simple method to detect voltage sags in the AC mains obtaining the voltage peak value. This information can be used to achieve, by analytical manipulations, the input current adjusting during the sag, in order to maintain the load power constant. Applying the above considerations to a single-phase five-level PWM rectifier both objectives power factor correction in steady state and voltage sag compensation in transient state are gotten. Simulation and experimental results have been carried out in a 1 kVA, single-phase power converter
基于单相DQ理论的高质量AC/DC变换器电压凹陷补偿
电压跌落是影响工业和商业用户的最重要的电能质量问题之一。工业过程对相对较小的电压跌落特别敏感。电力公司的故障恢复能力已经得到了提高,但要消除系统中的故障仍然是不可能的。因此,客户将不得不提高其设施中系统设备的穿越能力。本文介绍了单相DQ理论的应用,作为一种简单的方法来检测交流电源电压跌落,从而获得电压峰值。这些信息可以用来实现,通过分析操作,在暂降期间的输入电流调整,以保持负载功率恒定。将上述考虑应用于单相五电平PWM整流器,得到稳态功率因数校正和暂态电压暂降补偿两个目标。在1 kVA单相电源变换器上进行了仿真和实验
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