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Dynamic equivalencing of active distribution grids

机译:活动分发网格的动态相等

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The increased penetration level of distributed renewable energy sources (DRESs) into the existing distribution grids changes the dynamic properties of conventional systems, creating new challenges for power system operators. Therefore, new dynamic equivalent models are required to evaluate the dynamic behavior and stability margins of active distribution networks. For this purpose in this paper, a generic, input-output equivalent model is formulated, suitable for dynamic simulations of active distribution grids with high penetration level of DRESs. The developed model employs variable-order transfer functions, enabling the accurate representation of complex power system dynamics. The optimal order of the transfer functions is automatically determined through an iterative procedure, while the required model parameters are identified from measurements using the Vector Fitting method. Various network topologies and a diverse range of DRESs are considered to validate the accuracy of the developed model and demonstrate its generic properties. Finally, the performance of the proposed model is thoroughly compared with other conventional equivalent models, using error indexes.
机译:将分布式可再生能源(连衣裙)的渗透水平增加到现有的分布网格改变了传统系统的动态特性,为电力系统运营商创造了新的挑战。因此,需要新的动态等效模型来评估主动分配网络的动态行为和稳定性边缘。为此目的,在本文中,配制了一般的输入输出等效模型,适用于具有高穿衣服的主动分配网格的动态模拟。开发的模型采用可变级传输功能,从而实现复杂电力系统动态的准确表示。传递函数的最佳顺序通过迭代过程自动确定,而使用矢量拟合方法从测量中识别所需的型号参数。各种网络拓扑和各种连衣裙被认为是验证开发模型的准确性,并展示其通用性质。最后,使用错误索引与其他传统的等效模型进行了彻底的相比之下的性能。

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