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Design and Implementation of Ultraviolet Imager for Corona Discharge Detection Based on Solar-Blind AlGaN Focal Plane Arrays

机译:基于太阳盲AlGaN焦平面阵列的紫外电晕放电成像仪的设计与实现

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Corona discharges occur in high voltage electrical equipment in case of defects and damage, while ultraviolet(UV) light generated during discharge. High resolution imaging in the solar-blind UV bands has a lot of applications in corona discharge detection. A ultraviolet imager based on 320×256 solar-blind AlGaN focal plane arrays (FPA) was designed that work even in the sunlight, because the Cut-off wavelength of the AlGaN FPA is 280nm. The UV image signal processing system based on FPGA is composed of various function modules include the voltage bias, sequence drive, A/D data acquisition, non-uniformity correction, video transformation. Due to FPGA-based data acquisition and realtime image processing technology, the UV imager can operate at a rate up to 100 frame/s. The results show that the simulation high voltage ultraviolet image can be obtained by the UV imager. The image non-uniformity correction performed is one-points correction method to realize background subtraction. And the images show good uniformity and contrast. The UV image of the alcohol burner flame can be detected by the Ultraviolet Imager. Imaging quality was discussed which can be determined by signal-to-noise ratio (SNR), the integration time, the optics fumber and so on. The best imaging conditions were analyzed and the imaging system was designed and setup. The conclusion is proved that the ultraviolet imager based on solar-blind AlGaN FPA provides a new method for corona discharge detection of high voltage power transmission and distribution system.
机译:万一发生故障和损坏,高压电气设备会发生电晕放电,而在放电过程中会产生紫外线。日盲紫外波段中的高分辨率成像在电晕放电检测中有许多应用。由于AlGaN FPA的截止波长为280nm,因此设计了一种基于320×256日盲AlGaN焦平面阵列(FPA)的紫外成像仪,该成像器甚至可以在阳光下工作。基于FPGA的紫外线图像信号处理系统由电压偏置,顺序驱动,A / D数据采集,不均匀校正,视频转换等各种功能模块组成。由于基于FPGA的数据采集和实时图像处理技术,UV成像仪可以高达100帧/秒的速度运行。结果表明,通过紫外成像仪可以得到模拟的高压紫外图像。进行的图像不均匀校正是一种用于实现背景减法的单点校正方法。并且图像显示出良好的均匀性和对比度。酒精燃烧器火焰的紫外线图像可以通过紫外线成像仪检测。讨论了成像质量,可以通过信噪比(SNR),积分时间,光学f /数量等来确定成像质量。分析了最佳成像条件,并设计和设置了成像系统。结论证明,基于太阳盲AlGaN FPA的紫外成像仪为高压输配电系统的电晕放电检测提供了一种新方法。

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