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Multi-Saliency Aggregation-Based Approach for Insulator Flashover Fault Detection Using Aerial Images

机译:基于多功能聚合的绝缘体闪光检测方法使用空中图像

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摘要

Accurate and timely detection of insulator flashover on power transmission lines is of paramount importance to power utilities. Most available solutions mainly focus on the exploitation of the flashover mechanism or the discharge area detection, rather than the identification of a damaged area due to flashovers using captured aerial images. To this end, this paper proposes a multi-saliency aggregation-based porcelain insulator flashover fault detection approach. The target area of the insulator is determined using the Faster-Pixelwise Image Saliency by Aggregating (F-PISA) algorithm based on the color and structural features. The color model can be established based on the color feature of the damaged areas on the insulator surface, and hence the damaged area can be identified. Based on the information obtained above, the contour information can be extracted. With the preceding process, the fault location can be confirmed with a good accuracy. The performance of the proposed detection approach is assessed through a comparative study with other available solutions. The numerical result demonstrates that the suggested solution can detect the insulator flashover with improved performance in terms of the average detection rate and average efficient detection rate. Additional analysis is carried out to evaluate its robustness and real-time performance, which confirms its deployment feasibility in practice.
机译:对电力传输线路上的绝缘子闪光灯的准确性和及时检测对电源实用程序至关重要。最具可用的解决方案主要专注于利用闪络机制或放电区域检测,而不是使用捕获的航拍图像的闪光件导致的受损区域的识别。为此,本文提出了一种基于多持阳性聚集的瓷绝缘体闪光检测方法。通过基于颜色和结构特征的聚合(F-PISA)算法,使用更快的像素图像显着性确定绝缘体的目标区域。可以基于绝缘体表面上受损区域的彩色特征来建立颜色模型,因此可以识别损坏的区域。基于上面获得的信息,可以提取轮廓信息。通过前面的过程,可以通过良好的精度确认故障位置。通过与其他可用解决方案的比较研究评估所提出的检测方法的性能。数值结果表明,建议的解决方案可以在平均检测率和平均有效检测率方面检测绝缘体闪络。进行了额外的分析,以评估其稳健性和实时性能,这证实了其在实践中的部署可行性。

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