广义注入位移因子及其在潮流暂态估计中的应用

Y. Chen, A. Domínguez-García, P. Sauer
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引用次数: 12

摘要

本文提出了一种利用线性灵敏度注入位移因子(ISFs)估计电力系统在失电或负荷偶然性增加后暂态期间的输电线路流量的方法。传统上,isf是根据系统的离线潮流模型计算的,并定义了空闲总线。然而,所提出的方法依赖于通过从相量测量单元获得的高频同步测量产生的线性方程组的解来估计的广义isf。尽管广义isf是在扰动前的稳态工作点获得的,但通过在适当的时间尺度上利用惯性和调节性功率流,它们可以被操纵来预测事故后暂态期间的有功输电线路流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generalized injection shift factors and application to estimation of power flow transients
This paper proposes a method to estimate transmission line flows in a power system during the transient period following a loss of generation or increase in load contingency by using linear sensitivity injection shift factors (ISFs). Traditionally, ISFs are computed from an offline power flow model of the system with the slack bus defined. The proposed method, however, relies on generalized ISFs estimated via the solution of a system of linear equations that arise from high-frequency synchronized measurements obtained from phasor measurement units. Even though the generalized ISFs are obtained at the pre-disturbance steady-state operating point, by leveraging inertial and governor power flows during appropriate time-scales, they can be manipulated to predict active transmission line flows during the post-contingency transient period.
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