Zhang Yu, Dou Yinke, Jiao Yangyang, Zhao Liangliang, Guo Dongliang
College of Electrical and Power Engineering, Taiyuan University of Technology, Taiyuan 030024, China.
Department of Automation, Taiyuan Institute of Technology, Taiyuan 030008, China.
Sensors (Basel). 2024 Jun 21;24(13):4053. doi: 10.3390/s24134053.
Ice-covered transmission lines seriously affect the normal operation of the power transmission system. Resonance deicing based on different ice thicknesses is an effective method to solve the issue of ice-covered transmission lines. In order to obtain accurate ice thickness of transmission lines, this paper designs an ice thickness of transmission line recognition model based on Global Micro Strip Awareness Net (GMSA-Net) and proposes a Mixed Strip Convolution Module (MSCM) and a global micro awareness module (GMAM). The MSCM adapts to the shape of ice-covered transmission lines by using strip convolutions with different receptive fields, improving the encoder's ability to extract ice-covered features; the GMAM perceives through both global and micro parts, mining the connections between semantic information. Finally, the ice thickness of the generated segmented image is calculated using the method of regional pixel statistics. Experiments are conducted on the dataset of ice-covered transmission lines. The mean Intersection over Union (mIoU) of image segmentation reaches 96.4%, the balanced F-Score (F1-Score) is 98.1%, and the identification error of ice thickness is within 3.8%. Experimental results prove that this method can accurately identify the ice thickness of transmission lines, providing a control basis for the application of resonant deicing engineering.
覆冰输电线路严重影响输电系统的正常运行。基于不同冰厚的共振融冰是解决覆冰输电线路问题的有效方法。为了获得输电线路准确的冰厚,本文设计了一种基于全局微带感知网络(GMSA-Net)的输电线路冰厚识别模型,并提出了混合带卷积模块(MSCM)和全局微感知模块(GMAM)。MSCM通过使用具有不同感受野的带状卷积来适应覆冰输电线路的形状,提高编码器提取覆冰特征的能力;GMAM通过全局和微观部分进行感知,挖掘语义信息之间的联系。最后,利用区域像素统计方法计算生成的分割图像的冰厚。在覆冰输电线路数据集上进行了实验。图像分割的平均交并比(mIoU)达到96.4%,平衡F分数(F1-Score)为98.1%,冰厚识别误差在3.8%以内。实验结果证明,该方法能够准确识别输电线路的冰厚,为共振融冰工程的应用提供了控制依据。