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A Method for Supraharmonic Source Determination Based on Complex ICA

机译:基于复杂ICA的超声源测定方法

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Harmonic distortion in the frequency range 2 to 150 kHz is referred to as supraharmonic. The influence of supraharmonic on power grid has become a concern with increasing modern power electronic devices connected into power grid. Determining responsibility is the premise for controlling and managing supraharmonic. Since harmonics of a point of common coupling (PCC) are commonly produced by both utility side and customer side, it is important to determine which side is the dominant harmonic source and quantify their respective responsibilities. Considering supraharmonic sources of both sides are approximately independent, the complex independent component analysis (Complex ICA) method is used to obtain the mixed matrix and supraharmonic impedances of both sides. Meanwhile, a new index for judging dominant supraharmonic source is proposed by vector projection technique. Project the supraharmonic voltages, which are produced respectively by the supraharmonic sources of the utility side and the customer side, to the measured voltage of a PCC. By comparing the value of the projection, if the value of one side is larger than half of the supraharmonic voltage of the PCC, it can be considered to be a dominant harmonic source. The method can determine the position of dominant supraharmonic source and quantify the responsibility, which provides new ideas for the supraharmonic source tracing. Validity and effectiveness are verified by simulation analysis.
机译:频率范围2至150 kHz的谐波失真被称为Suprabmonic。 Supraharmonic对电网的影响已成为增加连接到电网的现代电力电子设备的担忧。确定责任是控制和管理Suprahardarconic的前提。由于共同耦合点(PCC)的谐波通常由效用方和客户方产生,因此确定哪一方是主导谐波源并量化它们各自的职责。考虑到两侧的超谐波源大致独立,复杂的独立分量分析(复杂的ICA)方法用于获得两侧的混合矩阵和超声谐波。同时,通过矢量投影技术提出了一种判断主导的超声源的新指标。将超声电压投影,其分别由实用程序侧和客户侧的超声源和客户侧产生的,以测量PCC的电压。通过比较投影的值,如果一侧的值大于PCC的超声电压的一半,则可以被认为是主要的谐波源。该方法可以确定主导的超声源的位置,并量化责任,为超级源跟踪提供了新的思路。通过模拟分析验证了有效性和有效性。

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