A Gray-Box Fitting Method of Grid-Connected Inverters Impedance for the Analysis of Harmonic Degradation
Wu Binyuan1, Li Jianwen1, Li Yonggang1, Wang Yue1, Sun Wei2
1. State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources North China Electric Power University Baoding 071000 China; 2. Baoding Power Supply Subsidiary Company of State Grid Hebei Electric Power Supply Co. Ltd Baoding 071000 China
Abstract:As a large number of distributed generation systems are connected to the grid through inverters, complex interactions between grid-connected inverters and weak-grids are formed, and the problem of harmonic degradation is prominent. One of the key points of harmonic degradation analysis is to establish the impedance model of the grid-connected inverter. The detailed internal information is needed in white-box impedance modeling, and the results of black-box impedance modeling are meaningless. Both methods have defects in practical engineering application. Therefore, setting the result of white-box as the goal and taking the method of black-box as the solution way, this paper presents that the impedance of the grid-connected inverters in gray-box is fitted by rational function approximation. First of all, the discrete impedance data are obtained by dual-mode disturbance, and then the matrix pencil method is used to extract the initial parameters and reduce the time of iterative calculation. An improved vector fitting is proposed. Then a hardware in the loop real-time simulation platform is built based on RT-Lab, and the effectiveness and advantages of this method are verified by comparative experiments. Finally, the analysis of harmonic degradation is carried out based on the results of impedance fitting to verify the practicability of the proposed method.
吴滨源, 李建文, 李永刚, 王月, 孙伟. 用于谐波劣化分析的并网逆变器阻抗灰箱拟合方法[J]. 电工技术学报, 2022, 37(4): 942-953.
Wu Binyuan, Li Jianwen, Li Yonggang, Wang Yue, Sun Wei. A Gray-Box Fitting Method of Grid-Connected Inverters Impedance for the Analysis of Harmonic Degradation. Transactions of China Electrotechnical Society, 2022, 37(4): 942-953.
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