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Design and Simulation of three Phase three Wire Shunt Active Filter using Instantaneous PQ Theory

机译:三相三丝分流式主动滤波器的设计与仿真使用瞬时PQ理论

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Due to intensive use of power converters and other non-linear loads, power quality is degrading. The presence of harmonics in the power lines result in greater power losses in distribution, interference problems in communication systems. Non linearity reduces the efficiency and power factor of the system. As the power factor reduces, the reactive power demanded from the supply increases which have no any contribution in energy transfer, so compensation is required. For this, shunt passive filter has been developed but it is bulky and frequency dependent and has many drawbacks. In contrast to passive filter, shunt active filter (SAF) has been developed which is smaller and has wide range of applications. In this paper, shunt active filter based on p-q theory is demonstrated for compensating reactive power and current harmonics. Simulation has been done with and without SAF and results are presented and ended with recommendation and conclusion. An effort is made to reduce the THD of the source current below 5% (specified by IEEE).
机译:由于电力转换器和其他非线性载荷的密集使用,功率质量降低。电力线中的谐波的存在导致通信系统中的分布,干扰问题的功率损失更大。非线性降低了系统的效率和功率因数。随着功率因数降低,电源所需的无功功率增加,在不带电的情况下没有任何贡献,因此需要补偿。为此,已经开发了分流无源滤波器,但庞大和频率依赖性并且具有许多缺点。与无源滤波器相比,已经开发了分流器有源滤波器(SAF),其较小并且具有广泛的应用。在本文中,基于P-Q理论的分流有源滤波器用于补偿无功功率和电流谐波。模拟已经完成,没有SAF和结果,并以推荐和结论结束。努力减少低于5%的源电流的THD(由IEEE指定)。

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