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Reduced-Order Small-Signal Model of Microgrid Systems

机译:微电网系统的降阶小信号模型

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摘要

The objective of this study was to develop a reduced-order small-signal model of a microgrid system capable of operating in both the grid-tied and the islanded conditions. The nonlinear equations of the proposed system were derived in the reference frame and then linearized around stable operating points to construct a small-signal model. The high-order state matrix was then reduced using the singular perturbation technique. The dynamic equations were divided into two groups based on the small-signal model parameters . The slow states, which dominated the systems dynamics, were preserved, whereas the fast states were eliminated. Step responses of the model were compared to the experimental results from a hardware test to assess their accuracy and similarity to the full-order system. The proposed reduced-order model was applied to a modified IEEE-37 bus grid-tied microgrid system to evaluate systems dynamic response in grid-tied mode, islanded mode, and transition from grid-tied to islanded mode.
机译:这项研究的目的是开发一种能够在并网和孤岛条件下运行的微电网系统的降阶小信号模型。该系统的非线性方程在参考框架中导出,然后围绕稳定工作点进行线性化,以构建一个小信号模型。然后使用奇异摄动技术对高阶状态矩阵进行约简。根据小信号模型参数,将动力学方程分为两组。保留了主导系统动力学的慢速状态,而消除了快速状态。将模型的阶跃响应与硬件测试的实验结果进行比较,以评估其准确性和与全序系统的相似性。提出的降阶模型被应用于改进的IEEE-37总线并网微电网系统,以评估系统在并网模式,孤岛模式以及从并网模式到孤岛模式下的动态响应。

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