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Model Order Reductions for Stability Analysis of Islanded Microgrids With Droop Control

机译:带下垂控制的孤岛微电网稳定性分析的模型降阶

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Three-phase inverters subject to droop control are widely used in islanded microgrids to interface distributed energy resources to a network and to properly share loads among different units. In this paper, a mathematical model for islanded microgrids with linear loads and inverters under frequency and voltage droop control is proposed. The model is constructed by introducing a suitable state-space transformation that allows to write the closed-loop model in an explicit state-space form. Then, the singular perturbations technique is used to obtain reduced order models that reproduce the stability properties of the original closed-loop model. The analysis shows that the currents' dynamics influence the stability of the microgrid, particularly for high values of the frequency droop control parameters. It is also shown that a further reduction of the model order leads to a typical oscillator model that is not able to predict the possible instability of the droop-controlled system. Numerical and experimental results demonstrate the validity of the proposed models.
机译:受到下垂控制的三相逆变器广泛用于孤岛微电网中,以将分布式能源连接到网络,并在不同单元之间正确分配负载。本文提出了在频率和电压下降控制下具有线性负载和逆变器的孤岛微电网的数学模型。通过引入合适的状态空间转换来构建模型,该状态空间转换允许以显式的状态空间形式编写闭环模型。然后,使用奇异摄动技术获得还原原始模型的稳定性的降阶模型。分析表明,电流的动态影响微电网的稳定性,特别是对于频率下降控制参数的高值。还显示出,模型阶数的进一步降低导致典型的振荡器模型无法预测下垂控制系统的可能不稳定性。数值和实验结果证明了所提模型的有效性。

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