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Dry-band and discharge activity characterization using visual and IR data analysis

机译:使用可视和红外数据分析表征干带和放电活性

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The role of dry bands on a wet pollution layer in insulator flashover has been well described in the literature. Silicone rubber insulators are now widely used because of their superior performance in high voltage power systems under polluted environments. However, the discharge activity is not totally eliminated under pollution and it may initiate tracking and erosion on the insulator surface. For this reason, effective laboratory tests of formulations of polymeric materials and insulator designs are a key point for long term performance. Research at Cardiff University established new test procedures in order to achieve controlled, reproducible evaluation of contaminated 11 kV silicone rubber composite insulators. Electrical parameters of voltage and leakage current are recorded during flashover tests of polluted insulators in a clean-fog chamber; in addition a high-definition camera and an IR camera are used to capture video records of the discharge activity. Computer procedures have been developed to post-process visual and IR records. Since the quantity of data is great, this is not a trivial task. In particular it is possible to evaluate the number of dry bands present at any selected instant, their location and temperature; the number of pixels belonging to each spark is calculated since it can give a good indication of spark extension and position. With the adoption of the new test technique and the post-processing procedure of electrical, visual and IR data, it is possible to evaluate not only the flashover condition but also to determine accurately variations of the dry bands and the discharge activity during the test.
机译:湿污染层上的干带在绝缘子闪络中的作用已在文献中充分描述。硅橡胶绝缘子由于在污染环境下的高压电力系统中具有优越的性能而被广泛使用。但是,放电活动并没有在污染下完全消除,它可能在绝缘子表面上引起跟踪和腐蚀。因此,对聚合物材料配方和绝缘体设计进行有效的实验室测试是长期性能的关键。卡迪夫大学的研究建立了新的测试程序,以实现对受污染的11 kV硅橡胶复合绝缘子的可控,可重复的评估。在清洁的雾室中对污染的绝缘子进行闪络测试时,记录电压和泄漏电流的电参数;此外,还使用高清摄像机和红外摄像机捕获放电活动的视频记录。已经开发了计算机程序来对视觉和IR记录进行后处理。由于数据量很大,所以这并不是一件容易的事。特别是可以评估在任何选定的时刻出现的干燥带的数量,位置和温度。计算属于每个火花的像素数,因为它可以很好地指示火花的延伸和位置。通过采用新的测试技术以及电气,视觉和IR数据的后处理程序,不仅可以评估闪络条件,还可以准确确定测试过程中干燥带的变化和放电活性。

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