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Design and Installation of Hybrid Power Filter for Grid-Connected Solar Rooftop at Plastic Plants

机译:塑料厂并网太阳能屋顶混合动力滤波器的设计与安装

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This paper presents a simple of Hybrid Power Filters System(HPFs) design techniques to minimize harmonic distortion that caused by a harmonic source such as ac drive and solar rooftop inverters. The predominant harmonic component is the fifth harmonic corresponding. As can be seen, there is heavy resonance at fifth harmonic when solar inverter are connected to the system, the consequences was that the equipment will eventually fail or sometimes by literally exploding. A novel method for implementation of the HPFs is presented to avoid this problem. The HPF arrangements where are three branches for fifth and seventh harmonic filter by tuning to the 250, 350Hz and active filter which, can be reduced harmonic more than the other techniques. The major objectives of this paper are to improve the power factor, to reduced current and voltage distortion and to reduce resonance problems at a system. Practically, it is ensured that the HPFs are best applied for grid-connected solar rooftop power system. After installing the HPFs, the harmonic distortion can be lowered than IEEE 519 standard. The results show that the association of HPFs is a very good solution for harmonic problems.
机译:本文提出了一种简单的混合动力滤波器系统(HPF)设计技术,以最大程度地减少由谐波源(如交流驱动器和太阳能屋顶逆变器)引起的谐波失真。主要谐波分量是对应的第五谐波。可以看出,当将太阳能逆变器连接到系统时,在五次谐波处会产生剧烈的共振,其后果是设备最终将失效或有时会突然爆炸。提出了一种用于实现HPF的新颖方法来避免此问题。 HPF安排是通过调整到250、350Hz和有源滤波器,将三个分支分别用于五阶和七阶谐波滤波器,与其他技术相比,它可以减少更多的谐波。本文的主要目标是提高功率因数,减少电流和电压失真并减少系统的谐振问题。实际上,可以确保将HPF最佳地用于并网的太阳能屋顶电源系统。安装HPF之后,谐波失真可以降低到低于IEEE 519标准。结果表明,HPF的关联对于谐波问题是一个很好的解决方案。

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