Estimation of Participation Factors for Power System Oscillation From Measurements

IF 4.5 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Industry Applications Pub Date : 2025-01-17 DOI:10.1109/TIA.2025.3530869
Tianwei Xia;Zhe Yu;Kai Sun;Di Shi;Kaiyang Huang
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Abstract

In a power system, when the participation factors of generators are computed to rank their participations into an oscillatory mode, a model-based approach is conventionally used on the linearized system model by means of the corresponding right and left eigenvectors. This paper proposes a new approach for estimating participation factors directly from measurement data on generator responses under selected disturbances. The approach computes extended participation factors that coincide with accurate model-based participation factors when the measured responses satisfy an ideally symmetric condition. This paper relaxes this symmetric condition with the original measurement space by identifying and utilizing a coordinate transformation to a new space optimally recovering the symmetry. Thus, the optimal estimates of participation factors solely from measurements are achieved, and the accuracy and influencing factors are discussed. The proposed approach is first demonstrated in detail on a two-area system and then tested on an NPCC 48-machine power system. The penetration of inverter-based resources is also considered.
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电力系统振荡参与因子的测量估计
在电力系统中,当计算发电机的参与因子以将其参与排序为振荡模式时,通常采用基于模型的方法,通过相应的左右特征向量对线性化的系统模型进行处理。本文提出了一种新的方法,直接从选定扰动下发电机响应的测量数据估计参与因子。当实测响应满足理想对称条件时,该方法计算与精确的基于模型的参与因子相吻合的扩展参与因子。本文通过识别并利用坐标变换到新的空间来最优地恢复对称,从而放宽了这种与原始测量空间的对称条件。因此,仅从测量中获得了参与因子的最优估计,并讨论了准确性和影响因素。该方法首先在两区系统上进行了详细的验证,然后在NPCC 48机电力系统上进行了测试。还考虑了基于逆变器的资源的渗透。
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来源期刊
IEEE Transactions on Industry Applications
IEEE Transactions on Industry Applications 工程技术-工程:电子与电气
CiteScore
9.90
自引率
9.10%
发文量
747
审稿时长
3.3 months
期刊介绍: The scope of the IEEE Transactions on Industry Applications includes all scope items of the IEEE Industry Applications Society, that is, the advancement of the theory and practice of electrical and electronic engineering in the development, design, manufacture, and application of electrical systems, apparatus, devices, and controls to the processes and equipment of industry and commerce; the promotion of safe, reliable, and economic installations; industry leadership in energy conservation and environmental, health, and safety issues; the creation of voluntary engineering standards and recommended practices; and the professional development of its membership.
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