Harmonic Source Localization Method for Multi-Grid-Connected Inverter Power System Based on Black-Box Model

Bo Chen, Junfei Wang, Chi Zhang, Jiachen Xue, Xiao‐Qiang Li, X. Jiang
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Abstract

As the main device to connect renewable energy with public grid interface, grid-connected inverter not only has to transport the electrical energy emitted from renewable energy to the grid, but also assumes the important mission of stable operation of power generation system. However, limited to the manufacturer’s confidentiality agreement, the internal structural parameters of the grid-connected inverter cannot be known in the engineering field so that the grid-connected inverter appears a Black-Box. For this case, this paper presents a Black-Box method, using impedance measurement method to obtain the equivalent impedance model of grid-connected inverters, and then the impedance model of the whole system is obtained. On this basis, the positioning of the primary device for the induction of harmonic resonances was done by performing participation analysis of the system. The IEEE14 node case system was used to validate the feasibility of the method.
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基于黑盒模型的多并网逆变电源系统谐波源定位方法
并网逆变器作为连接可再生能源与公共电网接口的主要设备,不仅要将可再生能源发出的电能输送到电网中,还承担着发电系统稳定运行的重要任务。然而,受限于制造商的保密协议,在工程领域无法知道并网逆变器的内部结构参数,从而使并网逆变器出现了一个黑盒子。针对这种情况,本文提出了一种黑盒法,利用阻抗测量法得到并网逆变器的等效阻抗模型,进而得到整个系统的阻抗模型。在此基础上,通过对系统的参与分析,对谐波共振感应主装置进行定位。利用IEEE14节点案例系统验证了该方法的可行性。
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