球隙最短路径电场特征集与特征选择方法
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TM855

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国家自然科学基金(51477120);中国博士后科学基金(2016M602354)


Study on electric field features for the shortest path of sphere gap and the feature selection methods
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    摘要:

    球隙作为典型空气间隙是一种研究空气击穿特性的重要电极结构,依据球隙最短路径上的电场分布定义一组电场特征集。以IEC 60052标准中的271个球隙作为样本集,采用相关性系数、敏感性系数、遗传算法和随机森林4种方法进行特征选择,通过小样本数据对支持向量回归机进行训练,对其他测试样本的工频击穿电压进行预测。结果表明,在不进行特征选择时,所有样本的预测值与试验基准值相比平均绝对百分比误差为4.21%,与试验值基本吻合,验证了所定义的最短路径电场特征集的有效性,采用上述4种特征选择方法进行特征选择后,预测结果平均绝对百分比误差分别为1.92%、2.00%、3.86%和2.04%,其中相关性系数法具有最高的预测精度,对比结果发现,Emin、Lw90这2个特征量在模型中起到了至关重要的作用。该方法对复杂间隙乃至工程间隙的放电特性研究具有指导意义。

    Abstract:

    As a typical air gap, the sphere gap is a kind of important electrode structure for studying air gap breakdown characteristics. Firstly, an electric field feature set is defined on the basis of electric field distribution on the shortest path. 271 power frequency breakdown voltages collected from IEC 60052: 2002 are considered as samples set. Then, four feature selection methods including the Pearson correlation coefficient, sensitivity coefficient, genetic algorithm and random forest are adopted to select features. In the end, the support vector regression (SVR) is trained by small sample data to predict power frequency breakdown voltages of other samples. The prediction results show that without the feature selection, the mean absolute percentage error is 4.21% for breakdown voltages of all samples with test results as the reference. Thus, the effectiveness of the feature set is verified. The mean absolute percentage errors of the results by adopting four feature selection methods are 1.92%, 2.00%, 3.86% and 2.04% respectively. Pearson correlation coefficient corresponds to the highest prediction accuracy. By comparing the results, it is concluded that the features of Emin and Lw90 play crucial roles in the model. The proposed method has a guiding significance to the study on discharge characteristics of complex gaps and engineering gaps in the future.

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金颀,邱志斌,阮江军,等.球隙最短路径电场特征集与特征选择方法[J].电力科学与技术学报,2020,35(6):12-20.
JIN Qi, QIU Zhibin, RUAN Jiangjun, et al. Study on electric field features for the shortest path of sphere gap and the feature selection methods[J]. Journal of Electric Power Science and Technology,2020,35(6):12-20.

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  • 在线发布日期: 2021-04-16
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