电力系统实际小信号稳定域的研究

Y. Yixin, Liang Gang
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引用次数: 2

摘要

为了更好地理解低频振荡,我们主要研究了功率注入空间中由Hopf分岔点组成的小信号稳定区(SSSR)边界的动力学和几何性质。首先,研究了动力注入空间中由Hopf分岔点组成的边界的特征。通过对典型系统边界的二维截面的研究,我们发现临界振荡模态具有相似频率的边界在几何上可能是对称的。然后,为了提高SSSR边界的计算精度,我们研究了考虑发电机饱和时边界的差异,发现SSSR比不考虑发电机饱和时要大一些。根据以上结果,我们发现发电机在SSSR的实际边界处都是饱和的。因此,我们建议使用发电机的饱和参数来计算SSSR的边界。
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Studies on practical Small Signal Stability Region of electrical power systems
To give more insights of the low-frequency oscillations, we mainly investigate the dynamical and geometrical properties of boundaries of Small Signal Stability Region (SSSR) composed of Hopf bifurcation points in power injection space. First, we investigate the characteristics of boundaries composed of Hopf bifurcation points in power injection space. By investigating the two-dimensional cross-sections of the boundaries of a typical system, we find the boundaries whose critical oscillation modes have similar frequency are likely symmetrical in geometry. Then, to improve the precision of computing the boundary of SSSR, we investigate the difference of boundaries when considering the saturation of generator, and we find the SSSR becomes a little bigger than not considering the saturation of generator. Based on the result above, we find that the generators are all saturated at the practical boundary of SSSR. So we suggest using the saturated parameters of generator to compute the boundary of SSSR.
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