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激光诱导击穿光谱法分析高压绝缘子中的污染。

Analysis of Pollution in High Voltage Insulators via Laser-Induced Breakdown Spectroscopy.

机构信息

Shanxi Electric Power Research Institute, Taiyuan 030000, China.

Engineering laboratory of power equipment reliability in complicated coastal environments, Tsinghua Shenzhen International Graduate School, Shenzhen 518055, China.

出版信息

Molecules. 2020 Feb 13;25(4):822. doi: 10.3390/molecules25040822.

Abstract

Surface pollution deposition in a high voltage surface can reduce the surface flashover voltage, which is considered to be a serious accident in the transmission of electric power for the high conductivity of pollution in wet weather, such as rain or fog. Accordingly, a rapid and accurate online pollution detection method is of great importance for monitoring the safe status of transmission lines. Usually, to detect the equivalent salt deposit density (ESDD) and non-soluble deposit density (NSDD), the pollution should be collected when power cut off and bring back to lab, time-consuming, low accuracy and unable to meet the online detection. Laser-induced breakdown spectroscopy (LIBS) shows the highest potential for achieving online pollution detection, but its application in high voltage electrical engineering has only just begun to be examined. In this study, a LIBS method for quantitatively detecting the compositions of pollutions on the insulators was investigated, and the spectral characteristics of a natural pollution sample were examined. The energy spectra and LIBS analysis results were compared. LIBS was shown to detect pollution elements that were not detected by conventional energy spectroscopy and had an improved capacity to determine pollution composition. Furthermore, the effects of parameters, such as laser energy intensity and delay time, were investigated for artificial pollutions. Increasing the laser energy intensity and selecting a suitable delay time could enhance the precision and relative spectral intensities of the elements. Additionally, reducing the particle size and increasing the density achieved the same results.

摘要

表面污染沉积在高压表面会降低表面闪络电压,在潮湿天气(如雨或雾)中,由于污染的高导电性,这被认为是电力传输中的严重事故。因此,快速准确的在线污染检测方法对于监测输电线路的安全状态非常重要。通常,为了检测等效盐密(ESDD)和不溶性沉积物密度(NSDD),需要在停电时收集污染并带回实验室,这既耗时又不准确,无法满足在线检测的要求。激光诱导击穿光谱(LIBS)在实现在线污染检测方面显示出最大的潜力,但它在高压电气工程中的应用才刚刚开始被研究。在这项研究中,研究了一种用于定量检测绝缘子上污染物成分的 LIBS 方法,并对自然污染样品的光谱特性进行了检验。比较了能谱和 LIBS 的分析结果。LIBS 被证明可以检测到常规能谱检测不到的污染元素,并且具有改善的污染成分确定能力。此外,还研究了人工污染的参数(如激光能量强度和延迟时间)的影响。增加激光能量强度并选择合适的延迟时间可以提高元素的精度和相对光谱强度。此外,减小颗粒尺寸和增加密度也可以达到相同的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a9e/7070365/3003ad8b5f64/molecules-25-00822-g001.jpg

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