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A comparison of methods for estimating the geoelectric field

机译:估算地电场方法的比较

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The geoelectric field is the primary input used for estimation of geomagnetically induced currents (GICs) in conducting systems. We compare three methods for estimating the geoelectric field given the measured geomagnetic field at four locations in the U.S. during time intervals with average Kp in the range of 2-3 and when the measurements had few data spikes and no baseline jumps. The methods include using (1) a preexisting 1-D conductivity model, (2) a conventional 3-D frequency domain method, and (3) a robust and remote reference 3-D frequency domain method. The quality of the estimates is determined using the power spectrum (in the period range 9.1 to 18,725 s) of estimation errors along with the prediction efficiency summary statistic. It is shown that with respect to these quality metrics, Method 1 produces average out-of-sample electric field estimation errors with a variance that can be equal to or larger than the average measured variance (due to underestimation or overestimation, respectively), and Method 3 produces reliable but slightly lower quality estimates than Method 2 for the time intervals and locations considered.
机译:地电场是用于估算传导系统中地磁感应电流(GIC)的主要输入。在给定的时间间隔内,在美国的四个位置,平均Kp在2-3的范围内,并且测量值几乎没有数据峰值并且没有基线跳变时,我们比较了三种估算地电场的方法。该方法包括使用(1)预先存在的1-D电导率模型,(2)传统的3-D频域方法和(3)鲁棒的远程参考3-D频域方法。使用估计误差的功率谱(在9.1至18,725 s的时间范围内)以及预测效率摘要统计量来确定估计的质量。结果表明,对于这些质量指标,方法1产生的平均样本外电场估计误差的方差可以等于或大于平均测量方差(分别由于低估或过高估计),并且对于所考虑的时间间隔和位置,方法3产生了可靠的但质量略低于方法2的质量估计。

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