Study on a New Method of Checking the Actual UV Photon Number of Substation Electric Apparatus

Yang Qing, Luo Li, Gu Bing, Tao Dingfeng, Wang Yunzhong, Zhu Xi
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Abstract

As an effective approach of testing corona discharge, UV imaging technology is non-contact, sensitive and intuitive, thus with a bright application prospect in the fault detection of electric apparatus. Currently, the strength of corona discharge is usually represented by the photon number output by UV imager, but in field service, it is difficult to accurately determine and quantitatively control the measuring distance. As a result, the different detection results of photon number are less comparable. This paper first deduces the relationship between the image height of substation electric apparatus and the actual number of UV photons by establishing a model for actual UV photons calculating, and then obtains the statistical results of UV photons of insulators and grading rings in time of different measuring distances and image heights by conducting the field UV corona test. Finally, a new method of checking the actual photons of UV corona is proposed according to the proposed model and field test data. According to the research results, the checking of actual photon number after taking the image height of electric apparatus into account may effectively eliminate the impact of measuring distance during field UV detection.
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变电站电器实际紫外光子数检测新方法的研究
紫外成像技术作为一种检测电晕放电的有效手段,具有非接触、灵敏、直观等特点,在电气设备故障检测中具有广阔的应用前景。目前,电晕放电强度通常用紫外成像仪输出的光子数来表示,但在现场服务中,难以准确确定和定量控制测量距离。因此,不同光子数检测结果的可比性较差。本文首先通过建立实际紫外光子计算模型,推导出变电站电气设备成像高度与实际紫外光子数之间的关系,然后通过现场紫外电晕试验,得到绝缘子和分级环在不同测量距离和成像高度下的紫外光子统计结果。最后,根据所建立的模型和实测数据,提出了一种新的检测紫外日冕实际光子的方法。研究结果表明,考虑电器像高后的实际光子数校验可以有效地消除现场紫外检测中测量距离的影响。
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