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A modified general Cayley transformation for the calculation of critical eigenvalues of large-scale power systems with DAE models

机译:一种改进的综合Cayley转换,用于计算大型大型电源系统的临界特征值

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The computation of critical eigenvalues of a large-scale matrix in an efficient manner is challenging for small-signal stability analysis of power systems. Although the generalized Cayley transformation has been used extensively for calculating the critical eigenvalues, this approach breaks the sparsity of augmented state matrix during the transformation, and subsequently degrades the computation efficiency. In this paper, a modified generalized Cayley transformation is proposed to map the critical eigenvalues to the ones with the largest magnitudes. The biggest advantage of this method is that the proposed transformation can preserve the sparsity of the augmented state matrix, resulting in better performance, convergence and robustness, as compared to the conventional generalized Cayley transformation method. A rigorous proof is presented to show the accuracy and the effectiveness of the proposed method. Numerical experiments are tested on both the IEEE 118-bus system and the Hainan power grid to illustrate the validity of the proposed method.
机译:以有效的方式计算大规模矩阵的临界特征值是对电力系统的小信号稳定性分析的具有挑战性。尽管广泛化的Cayley转换已经广泛用于计算临界特征值,但是该方法在转换期间打破了增强状态矩阵的稀疏性,随后降低了计算效率。在本文中,提出了一种改进的广义塞利转化,以将临界特征值映射到具有最大大小的临界特征值。该方法的最大优点是,与传统的广义Cayley转化方法相比,所提出的变换可以保持增强状态矩阵的稀疏性,从而产生更好的性能,收敛和鲁棒性。提出了严格的证据以表明所提出的方法的准确性和有效性。在IEEE 118总线系统和海南电网上测试数值实验,以说明所提出的方法的有效性。

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