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首页> 外文期刊>Nature reviews Cancer >Metal Contamination Distribution Detection in High-Voltage Transmission Line Insulators by Laser-induced Breakdown Spectroscopy (LIBS)
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Metal Contamination Distribution Detection in High-Voltage Transmission Line Insulators by Laser-induced Breakdown Spectroscopy (LIBS)

机译:激光诱导的击穿光谱(LIBS)在高压传输线绝缘子中的金属污染分布检测

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摘要

The fast detection of classical contaminants and their distribution on high-voltage transmission line insulators is essential for ensuring the safe operation of the power grid. The analysis of existing insulator contamination has traditionally relied on taking samples during a power cut, taking the samples back to the lab and then testing them with elemental analysis equipment, especially for sugars, bird droppings, and heavy metal particulates, which cannot be analysed by the equivalent salt deposit density (ESDD) or non-soluble deposit density (NSDD) methods. In this study, a novel method called laser-induced breakdown spectroscopy (LIBS) offering the advantages of no sample preparation, being nearly nondestructive and having a fast speed was applied for the analysis of metal contamination. Several LIBS parameters (laser energy and delay time) were optimized to obtain better resolution of the spectral data. The limit of detection (LOD) of the observed elements was obtained using a calibration curve. Compared to calibration curves, multivariate analysis methods including principal component analysis (PCA), k-means and partial least squares regression (PLSR) showed their superiority in analyzing metal contamination in insulators. Then, the elemental distribution of natural pollution was predicted using LIBS to fully capture information about the bulk elements (Na, Ni, Cu, Mn, Ca, etc.) of entire areas with PLSR. The results showed that LIBS could be a promising method for accurate direct online quantification of metal contamination in insulators.
机译:快速检测经典污染物及其对高压传输线绝缘体的分布对于确保电网的安全操作至关重要。现有绝缘体污染的分析已经传统上依赖于电源切断期间取样,取样品回实验室,然后用元素分析设备测试它们,特别是对糖,鸟粪,和重金属微粒,这是不能由被分析等效盐沉积密度(ESDD)或非可溶性沉积密度(NSDD)方法。在该研究中,一种新的方法,称为激光诱导的击穿光谱(Libs)提供了不含样品制备的优点,几乎无损且具有快速速度的优点用于分析金属污染。优化了几个LIB参数(激光能量和延迟时间)以获得频谱数据的更好分辨率。使用校准曲线获得观察元件的检测极限(LOD)。与校准曲线相比,多变量分析方法包括主成分分析(PCA),K均值和局部最小二乘回归(PLSR)在分析绝缘体中的金属污染方面表现出它们的优越性。然后,使用LIB预测天然污染的元素分布,以完全捕获有关散装元素(Na,Ni,Cu,Ca,Ca等)的全部区域的信息。结果表明,Libs可以是绝缘体中准确直接在线定量金属污染的有希望的方法。

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