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A Modified DQ Impedance Model of Three-Phase Grid-Connected Inverter-Grid System Considering Coupling between Inverter and Grid

机译:考虑逆变器与电网耦合的三相并网逆变器-电网系统的改进DQ阻抗模型

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This paper presents a modified dq impedance model of the three-phase voltage source grid-connected inverter (GCI)-grid system considering coupling effect between GCI part and grid part for small-signal stability analysis. Steady-state terminal voltage and current information of the GCI part which are necessary in conventional dq impedance modelling methods are calculated based on grid parameters, i.e., grid voltage and grid impedance, and current references of current-controlled GCI or power references of power-controlled GCI. In addition, effects of dynamics of grid voltage and phase-locked loop (PLL) on dq impedance characteristics of grid part are also investigated, which enables the modified dq impedance model of grid part to relate with that of GCI part. The modified dq impedance model of the GCI part which takes the effects of grid voltage and grid impedance into account need not know steady-state terminal voltage and current information. In addition, the modified dq impedance model of grid part may provide accurate stability analysis during grid voltage changes. The insight of instability mechanism of the GCI-grid coupling system may be facilitated using the modified dq impedance models. Simulation results are given to validate correctness of the proposed dq impedance model of the GCI-grid system, and effectiveness of the dq impedance model for stability analysis.
机译:针对小信号稳定性分析,考虑了GCI部分与电网部分之间的耦合效应,提出了一种改进的三相电压源并网逆变器(GCI)-电网系统的dq阻抗模型。根据电网参数(即电网电压和电网阻抗)以及电流控制的GCI的电流参考或功率-功率的功率参考来计算常规dq阻抗建模方法中所需的GCI部件的稳态终端电压和电流信息。受控的GCI。此外,还研究了电网电压和锁相环(PLL)的动态特性对电网部件dq阻抗特性的影响,从而使修改后的电网部件dq阻抗模型与GCI部件的模型相关。考虑到电网电压和电网阻抗影响的GCI部件的改进的dq阻抗模型不需要知道稳态端子电压和电流信息。此外,修改后的电网部分的dq阻抗模型可以在电网电压变化期间提供准确的稳定性分析。使用修改后的dq阻抗模型可以促进对GCI-电网耦合系统的不稳定性机制的了解。仿真结果验证了所提出的GCI电网dq阻抗模型的正确性以及dq阻抗模型对稳定性分析的有效性。

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