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The Importance of Realistic Load Modeling in Power System Harmonic Respnance Analysis

机译:实际负载建模在电力系统谐波谐振分析中的重要性

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Parallel resonances in electrical power systems can considerably increase levels of harmonic voltages, which may lead to a component breakdown. Major capacitive network components, such as shunt capacitors, can significantly change the network harmonic impedance. It is therefore common to perform a harmonic load flow analysis before the installation of these devices. Due to the difficulty of accurate modeling, system loads are often ignored in such assessments. However, this approach can lead to very pessimistic results, possibly leading to unnecessary investments in filtering solutions. This paper presents the results of a harmonic load flow analysis that was performed during the planning of new capacitors in the 110-kV subtransmission network of Helsinki. Different harmonic load models were employed. The results indicate that because of load damping in the network, it is not necessary to have additional harmonic limiting devices with the capacitors.
机译:电力系统中的并行共振可以显着增加谐波电压水平,这可能导致分量击穿。主要的电容网络组件,如分流电容,可以显着改变网络谐波阻抗。因此,在安装这些设备之前,它是常见的谐波流量分析。由于难以进行准确的建模,在这种评估中通常会忽略系统负载。然而,这种方法可能导致非常悲观的结果,可能导致过滤解决方案的不必要的投资。本文介绍了谐波流量分析的结果,该分析是在赫尔辛基的110 kV次转发网络中的新电容器中进行的。采用不同的谐波载荷模型。结果表明,由于网络中的负载阻尼,因此不必具有具有电容器的附加谐波限制装置。

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