Application of power system analysis framework modeling method in analyzing HAPF

Wang Liguo, W. Yi, Xia Yu, Zou Jing, X. Dianguo
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Abstract

In order to reduce possible resonance induced by harmonics, this paper focus on analyzing sensitivity and stability of passive power filter (PPF) that plays an important role in hybrid active power filter (HAPF). To minimize the capacity of HAPF and forecast its stability, a power system analysis framework (PSAF) that is professional software for analyzing the power distribution system is used to analyze PPF based on Graph Theory. The filtering effect and ability to compensate reactive power is demonstrated by proposed method that is useful and suitable to any HAPF. Comparing to other methods, proposed method shows the advantages of approximately physical simulation and higher calculation precision due to designing detail system parameters. It is implemented in an HAPF with a 3000kVA that installed in a coal mill in Northern China. The simulation and measured results show that the proposed method is not only easy to be calculated and implemented, but also very effective in reducing harmonics and compensating reactive power.
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电力系统分析框架建模方法在HAPF分析中的应用
为了减少谐波可能引起的谐振,本文重点分析了在混合有源电力滤波器中起重要作用的无源电力滤波器的灵敏度和稳定性。为了使HAPF的容量最小化并预测其稳定性,利用专业的配电系统分析软件PSAF对HAPF进行了图论分析。该方法的滤波效果和无功补偿能力得到了验证,适用于任何HAPF。与其他方法相比,由于设计了详细的系统参数,该方法具有近似物理模拟和较高计算精度的优点。该方法已在中国北方某煤厂3000kVA的HAPF中实现。仿真和实测结果表明,该方法不仅易于计算和实现,而且在降低谐波和补偿无功功率方面非常有效。
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