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Analysis of an Impedance Modeling Approach for Droop-Controlled Inverters in System DQ Frame

机译:系统DQ帧中下垂控制逆变器阻抗建模方法分析

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Small-signal stability of droop-controlled inverters in islanded ac microgrids can be assessed by using impedance-based criterion. In order to have an accurate output impedance model for these systems, the effect of fundamental frequency must be taken into account. The existing works suggest to characterize each inverter by two transfer matrices: first, the transfer matrix between output current and output voltage (i.e., the dq-domain impedance matrix), and second, the transfer matrix between output current and fundamental angular frequency. Addressing the frequency contribution in a separate term, leads to a stability criterion, that requires an additional step, compared to the conventional impedance-based criterion in dq frame, that only needs the dq impedance matrix. This paper proposes to include the frequency contribution in the dq output impedance of droop-controlled inverters. This gives the possibility to use the dq- domain impedance-based stability criterion, even in off-grid systems. A laboratory prototype of droop-controlled inverter is implemented, and its output impedance is measured. The good matching between analytical models and experimentally-measured impedances, confirms the validity of the performed small-signal analysis.
机译:通过使用基于阻抗的标准,可以评估孤岛交流微电网中下垂控制逆变器的小信号稳定性。为了使这些系统具有精确的输出阻抗模型,必须考虑基频的效果。现有的作品建议通过两个传输矩阵来表征每个逆变器:首先,输出电流和输出电压之间的传输矩阵(即,DQ域阻抗矩阵),第二,输出电流和基本角频率之间的传输矩阵。与DQ帧中的传统基于阻抗的标准相比,在单独术语中解决稳定性标准,该频率贡献导致稳定性标准,这需要额外的步骤,其仅需要DQ阻抗矩阵。本文提出包括DQ输出阻抗的DQ控制逆变器的频率贡献。这使得能够使用DQ域阻抗的稳定性标准,即使在离网系统中也是如此。实施下垂控制逆变器的实验室原型,并测量其输出阻抗。分析模型和实验测量的阻抗之间的良好匹配证实了所执行的小信号分析的有效性。

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