Harmonic Resonance Assessment Based on Field Measurements Data in an Industrial Plant

Amin Nafisi, M. Rezvani, R. Arababadi, Saeed Esmaeili
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引用次数: 1

Abstract

Harmonic resonance is a major concern in harmonic analysis of industrial power systems. This event can jeopardize system reliability and lead to significant issues in industrial plants. Consequently, assessment of electrical industrial networks from harmonic study point of view is essential. Field measurements can determine conditions and causes of a resonance phenomenon. In this study, the electrical network of Golgohar (GEG) Mining and Industrial Company is investigated using a power quality monitoring device. Measurements show a harmonic resonance at the frequency of 350 Hz. Moreover, this resonance is caused by the interaction of 6.3 kV shunt capacitors and the grid. In order to mitigate the resonance phenomenon, the whole electrical grid of the GEG Company is simulated in DIgSILENT PowerFactory software in details. A practical solution to eliminate the harmonic resonance is proposed. Results show the effectiveness of using single-tuned filters for harmonic resonance mitigation.
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基于现场测量数据的工业厂房谐波共振评估
谐波共振是工业电力系统谐波分析中的一个重要问题。该事件可能危及系统可靠性并导致工业工厂的重大问题。因此,从谐波研究的角度对电网进行评估是必要的。现场测量可以确定谐振现象的条件和原因。本研究采用电能质量监测装置对Golgohar (GEG)矿业公司的电网进行了研究。测量结果显示频率为350赫兹的谐振。此外,这种谐振是由6.3 kV并联电容器与电网的相互作用引起的。为了减轻谐振现象,在DIgSILENT PowerFactory软件中对GEG公司整个电网进行了详细的仿真。提出了一种消除谐波共振的实用方法。结果表明,使用单调谐滤波器对谐波共振进行抑制是有效的。
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