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Intelligent Tool for Determining the True HarmonicCurrent Contribution of a Customer in a Power Distribution Network

机译:用于确定配电网中客户真实谐波电流贡献的智能工具

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Customer loads connected to power distribution network may be broadly categorized as either linear or nonlinear. Nonlinear loads inject harmonics into the power network. Harmonics in a power system are classified as either load harmonics or as supply harmonics depending on their origin. The source impedance also impacts the harmonic current flowing in the network. Hence, any change in the source impedance is reflected in the harmonic spectrum of the current. This paper proposes a novel method based on artificial neural networks to isolate and evaluate the impact of the source impedance change without disrupting the operation of any load, by using actual field data. The test site chosen for this paper has a significant amount of triplen harmonics in the current. By processing the acquired data with the proposed algorithm, the actual load harmonic contribution of the customer is predicted. Experimental results confirm that attempting to predict the total harmonic distortion of a customer by simply measuring the customer's current may not be accurate. The main advantage of this method is that only waveforms of voltages and currents at the point of common coupling have to be measured. This method is applicable for both single- and three-phase loads.
机译:连接到配电网络的客户负载可大致分为线性或非线性。非线性负载将谐波注入电网。电力系统中的谐波根据其来源分为负载谐波或电源谐波。源阻抗还会影响网络中流动的谐波电流。因此,源阻抗的任何变化都会反映在电流的谐波频谱中。本文提出了一种基于人工神经网络的新方法,可以通过使用实际现场数据来隔离和评估源阻抗变化的影响,而不会干扰任何负载的运行。为本文选择的测试站点在电流中具有大量的三次谐波。通过使用提出的算法处理获取的数据,可以预测客户的实际负载谐波贡献。实验结果证实,仅通过测量客户的电流来预测客户的总谐波失真可能并不准确。该方法的主要优点是,只需测量公共耦合点的电压和电流波形即可。此方法适用于单相和三相负载。

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