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Synchrophasor measurement-based correlation approach for dominant mode identification in bulk power systems

机译:基于同步相量测量的相关方法在大功率系统主模识别中的应用

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This study proposes a novel synchrophasor measurement-based correlation approach to identify the dominant oscillation modes in bulk power systems. In the proposed approach, the reference channel (RC) of cross-correlation (CC) is optimally selected based on residue analysis. With the selected RC, the CC of field-measurement data is formed to extract the free-decay system responses. Then, eigensystem realisation algorithm (ERA) is applied to the extracted responses to estimate the system state-space model. A practical model order selection strategy for ERA is proposed to determine the system model order. Further, cross-coherence spectrum is employed to distinguish the dominant modes from the eigenvalues of the estimated state-space model. The proposed method can achieve accurate and robust solutions in the presence of different levels of errors and noises in measurement data. The effectiveness of the proposed method has been verified in a 16-generator, 68-bus test system as well as the China Southern Power Grid system.
机译:这项研究提出了一种新颖的基于同步相量测量的相关方法来识别大功率系统中的主导振荡模式。在提出的方法中,基于残差分析,最佳选择互相关(CC)的参考通道(RC)。利用选定的RC,形成现场测量数据的CC,以提取自由衰减系统响应。然后,将本征系统实现算法(ERA)应用于提取的响应,以估计系统状态空间模型。提出了一种适用于ERA的实用模型订单选择策略,用于确定系统模型订单。此外,采用交叉相干谱来将主导模与估计状态空间模型的特征值区分开。所提出的方法可以在测量数据中存在不同级别的误差和噪声的情况下实现准确而稳健的解决方案。该方法的有效性已在16台发电机,68总线测试系统以及南方电网系统中得到验证。

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