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A Dual UPQC to Mitigate Sag/Swell, Interruption, and Harmonics on Three Phase Low Voltage Distribution System

机译:双UPQC可缓解三相低压配电系统上的骤降/骤升,中断和谐波

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The Unified Power Quality Conditioner (UPQC) is a combination of a series active filter (SeAF) and a shunt active filter (ShAF) connected in parallel by a DC link capacitor. This device can mitigate power quality (PQ) problems i.e. sag/swell, harmonics, and unbalance on the source and load bus of threephase three-wire (3P3W) on low voltage distribution systems simultaneously. The disadvantage of UPQC is that it is unable to overcome the voltage interruption so that the source can not deliver power to the load. This paper proposes a dual UPQC model to overcome the voltage interruption on the source bus so that the load bus continues to get power supply. There are six disturbance cases i.e. sinusoidal supply-sag-non-linear load (SSag-NL-L), sinusoidal supply-swell-NL-L (S-Swell-NL-L), sinusoidal-interruption-NL-L (S-Inter-NL-L), distorted supplysag-NL-L load (D-Sag-NL-L), distorted supply-swell-NL-L (DSwell-NL-L), and distorted supply-interruption-NL-LL (DInter-NL-L). The proportional Integral (PI) method is used to control the SeAF and the ShAF in the dual UPQC circuit model. The simulation results show that in the D-Inter-NL-LL case, a Dual UPQC model can maintain a load voltage magnitude of 266.60 V (voltage drop only of 14%), higher compared to a Single UPQC model of 173.97 V (voltage drop of 43.88%). In the same case, a dual UPQC model is capable of resulting in an average total harmonics distortion (THD) of load voltage of 10.10%, lower compared to a single UPQC model of 26.70%.
机译:统一电能质量调节器(UPQC)是串联有源滤波器(SeAF)和并联有源滤波器(ShAF)的组合,通过直流链路电容器并联连接。该设备可以同时缓解电能质量(PQ)问题,即低压配电系统上三相三线(3P3W)的电源和负载总线上的骤降/骤升,谐波和不平衡。 UPQC的缺点是无法克服电压中断,因此电源无法为负载供电。本文提出了一种双UPQC模型,以克服源总线上的电压中断,从而使负载总线继续获得电源。有六种扰动情况,即正弦供应-垂降-非线性负载(SSag-NL-L),正弦供应-膨胀-NL-L(S-Swell-NL-L),正弦-中断-NL-L(S -Inter-NL-L),扭曲的电源供应-NL-L负载(D-Sag-NL-L),扭曲的供应膨胀-NL-L(DSwell-NL-L)和扭曲的供应中断-NL-LL (DInter-NL-L)。比例积分(PI)方法用于控制双UPQC电路模型中的SeAF和ShAF。仿真结果表明,在D-Inter-NL-LL情况下,双UPQC模型可以保持266.60 V的负载电压幅值(仅压降14%),高于173.97 V的单UPQC模型(电压(下降43.88%)。在同一情况下,双UPQC模型能够导致负载电压的平均总谐波失真(THD)为10.10%,低于单个UPQC模型的26.70%。

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