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Nodal harmonic impedance derivation of AC network in PSS/E

机译:PSS / E中交流网络的节点谐波阻抗推导

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A load flow based superposition method is presented to derive the nodal harmonic impedance of an AC network using PSS/E (Power System Simulator for Engineering) through an IPLAN (PSS/E Internal Programming Language) program. Using the CIGRE and IEEE guidelines for assessing the network harmonic impedance, harmonic models of the AC network element impedances, e.g. shunt capacitors and reactors, system load, generator, transmission lines, power cables and grid transformers, are implemented in the IPLAN program. The IPLAN program is validated with an IEEE 14-Bus Test System Benchmark (supplied by The University of Alberta (UofA), Canada). Therefore, it can be efficiently used to compute the nodal harmonic impedance of the AC network to enable AC harmonic filter design studies to be performed, without the need for any network reduction studies to be performed. A practical application of the method is presented for the Gulf Cooperation Council Interconnection Authority (GCCIA) HVDC project. This scheme links the 60Hz Saudi Arabian system to the 50Hz Gulf States and required extensive investigation of the network harmonic impedance on both sides of the HVDC link.
机译:提出了一种基于潮流的叠加方法,通过IPLAN(PSS / E内部编程语言)程序,使用PSS / E(工程用电力系统仿真器)得出交流网络的节点谐波阻抗。使用CIGRE和IEEE准则评估网络谐波阻抗,交流网络元素阻抗的谐波模型,例如在IPLAN程序中实现了并联电容器和电抗器,系统负载,发电机,传输线,电力电缆和电网变压器。 IPLAN程序已通过IEEE 14总线测试系统基准测试(由加拿大阿尔伯塔大学(UofA)提供)进行了验证。因此,它可以有效地用于计算AC网络的节点谐波阻抗,从而可以进行AC谐波滤波器设计研究,而无需进行任何网络缩减研究。该方法在海湾合作委员会互连局(GCCIA)高压直流输电项目中的实际应用。该方案将60Hz沙特阿拉伯系统链接到50Hz海湾国家,并且需要对HVDC链路两侧的网络谐波阻抗进行广泛研究。

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