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Validation of aggregated harmonic current source models based on different customer type configurations

机译:基于不同客户类型配置的汇总谐波电流源模型的验证

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Harmonic voltages are important voltage quality parameters defined in EN 50160. For harmonic voltage studies in electricity networks, harmonic emission of loads is often modelled as harmonic current source. In this paper harmonic current sources were parameterised on the basis of measure-ments of total harmonic current emission of several different low voltage networks. Measurements from low voltage net-works with different typical customer configurations were used: residential, offices and PV. A real medium voltage electricity distribution network of an Austrian distribution system operator, with significant consumption of residential and office customers, was chosen for this analysis. In order to automate the harmonic load flow calculations in DIgSILENT PowerFactory for every 10-minute interval of one week, a script in DIgSILENT Programming Language - DPL was developed. Harmonic voltage results from the harmonic load flow simulation are compared with the results of harmonic voltage measurements from power quality monitoring system installed in this network. The goal of this paper is to assess the suitability of the approach, where only background harmonics and key harmonic current sources are modelled. Since the approach provided good results, it can be used in future work as a basis for optimising the number and locations of power quality monitors in electricity distribution networks.
机译:谐波电压是EN 50160中定义的重要电压质量参数。对于电网中的谐波电压研究,通常将负载的谐波发射建模为谐波电流源。本文根据几种不同低压网络总谐波电流发射的测量值对参数进行了参数化。使用来自具有不同典型客户配置的低压网络的测量:住宅,办公室和光伏。此分析选择了奥地利配电系统运营商的实际中压配电网络,该网络消耗了大量的住宅和办公室客户。为了使DIgSILENT PowerFactory中每隔10分钟间隔一次的谐波潮流计算自动化,开发了DIgSILENT编程语言-DPL脚本。将来自谐波潮流模拟的谐波电压结果与来自安装在该网络中的电能质量监测系统的谐波电压测量结果进行比较。本文的目的是评估该方法的适用性,其中仅对背景谐波和关键谐波电流源进行建模。由于该方法提供了良好的结果,因此可以在将来的工作中用作优化配电网络中电能质量监视器的数量和位置的基础。

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