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A robust method for transmission line sequence parameter estimation using synchronized phasor measurements
DOI:10.1016/j.epsr.2023.109616.png)
摘要
En 中文
We present a positive and zero sequence line parameter estimation method, that is robust to systematic errors in the instrument transformers, especially when they are within the specified tolerance as per standards. Using Monte Carlo simulations, it is shown that the proposed approach is robust and accurate for all operating conditions, specifically for short length and lightly loaded transmission lines. We also validate the proposed approach on 400 kV and 765 kV transmission lines using actual field phasor measurement unit (PMU) data. Further, estimation of zero sequence line parameter values is somewhat tricky because not enough unbalance exists during the normal operation of the power grid. Therefore, we quantify the minimum percentage unbalance needed in currents to determine zero sequence line parameter values within 1% tolerance. We also present the line length and line loading effects in estimating zero sequence line parameter values using simulations. Simulation and field PMU data results on 765 kV and 400 kV lines of different lengths and loading levels show that the proposed method estimates accurate positive and zero sequence line parameter values.
Keyword:
Line parameter estimation
Percentage unbalance
Phasor measurement units (PMUs)
期刊
IF:
4.2
论文数:
1.2W
被引数:
2.2W
机构
引用论文
Transmission Lines Positive Sequence Parameters Estimation and Instrument Transformers Calibration Based on PMU Measurement Error Model
IEEE ACCESS
IF3.6
Instrument Transformer Calibration and Robust Estimation of Transmission Line Parameters Using PMU Measurements使用PMU测量的互感器校准和传输线参数的稳健估计
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