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Real time digital control system for a single-phase shunt active power filter

机译:单相并联有源电力滤波器的实时数字控制系统

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In this paper a real-time control system, developed to control a single-phase shunt active power filter used to minimize problems related to power quality in electrical systems is presented. The power stage of the active filter is based on a one-leg inverter, with two capacitors in the dc side, and a filter inductor in the ac side. The control system is based on the instantaneous power theory in the α-β-0 reference frame (pq-theory), modified to be applied in single-phase systems. In essence, the shunt active filter is designed to drain, from the electric grid, harmonic and reactive components of the load currents, such that the source current will become an almost sinusoidal waveform, with low harmonic distortion, and in phase with the system voltage. The control system is implemented using a development board (Atmel NGW100) and ensures simultaneous real-time acquisition of voltage and current data, the proposed system is capable of acquiring eight analog channels (16-bit resolution) simultaneously at 150ksps, based in the acquire data the power components calculation and compensation is performed accordingly to the p-q theory.
机译:在本文中,提出了一种实时控制系统,该系统可控制单相并联有源功率滤波器,以最大程度地减少与电气系统的电能质量有关的问题。有源滤波器的功率级基于一个单腿逆变器,在直流侧有两个电容器,在交流侧有一个滤波电感。该控制系统基于α-β-0参考系(pq理论)中的瞬时功率理论,经过修改后可应用于单相系统。本质上,并联有源滤波器设计用于从电网中汲取负载电流的谐波和无功分量,从而使源电流将变成几乎为正弦波形,具有低谐波失真,并且与系统电压同相。 。该控制系统使用开发板(Atmel NGW100)实施,可确保同时实时采集电压和电流数据,该系统能够以150ksps的速率同时采集八个模拟通道(16位分辨率)。数据功率分量的计算和补偿根据pq理论进行。

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