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Three-dimensional Visualization Technology for Ultrasonic Detection of Partial Discharges in Power Transformers

机译:电力变压器中局部放电超声波检测三维可视化技术

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Partial discharges are crucial sources for insulation deterioration in power transformers, and precise detections of partial discharge is of great significance for transformer condition monitoring. Recently, visualized ultrasonic detection technology has been increasingly used as a live detection method for locating partial discharges inside transformer. It has the advantages of strong penetrating ability and fast response, but still has the problems of poor detection sensitivity and low positioning accuracy when the atmosphere noises are high. Further, the sonography indicating the region of partial discharges measured by visualized ultrasonic technology is only the two-dimensional projection of the region of interest, and the precise spatial positioning of the partial discharge cannot be evaluated. This paper proposes an improved visualized ultrasonic technology for panoramic visualization of partial discharge voiceprint on power transformers. The refined power transformer model is established through 3-D laser scanning and virtual reconstruction technology. Ultrasonic sensors with center frequency of 100 kHz were used to collect ultrasonic signals presented on the surface of power transformer. A self-developed data extraction algorithm was used to obtain ultrasonic signal digital matrix from the original collected data. In the following, 2D to 3D geometric transformation is applied to perform digital ultrasonic data on the meshed grid of transformer model. Finally, the ultrasound image on the entire hologram can be displayed holographically, which can be used to indicate partial discharge defects that occur inside the transformer in the 3-D space. Experimental verification on a converter transformer with a capacity of 382MVA confirmed that using this new visualization method, the location of the ultrasonic hot spots has a higher accuracy.
机译:部分放电是用于电力变压器的绝缘劣化的关键源,并且局部放电的精确检测对于变压器状态监测具有重要意义。最近,可视化超声波检测技术越来越多地用作用于在变压器内部放电的现场检测方法。它具有强大的渗透能力和快速反应的优点,但是当大气噪声高时,仍然存在检测灵敏度和低定位精度的问题。此外,表示通过可视化超声技术测量的部分放电区域的超声检查仅是感兴趣区域的二维投影,并且不能评估局部放电的精确空间定位。本文提出了一种改进的可视化超声技术,用于电力变压器上局部放电声道的全景可视化。通过3-D激光扫描和虚拟重建技术建立精细电力变压器模型。具有100kHz的中心频率的超声传感器用于收集在电力变压器表面上呈现的超声波信号。自开发的数据提取算法用于从原始收集的数据获得超声信号数字矩阵。在下文中,应用了2D到3D几何变换,以在变压器模型的网格网格上执行数字超声数据。最后,可以充分地显示整个全息图上的超声图像,其可用于指示在3-D空间中发生变压器内部发生的局部放电缺陷。对电流变压器的实验验证,容量为382MVA确认使用这种新的可视化方法,超声波热点的位置具有更高的精度。

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