Salem Ali Ahmed, Al-Gailani Samir Ahmed, Amer Abdulrahman Ahmed Ghaleb, Alsharef Mohammad, Bajaj Mohit, Zaitsev Ievgen, Ngah Razali, Ghoneim Sherif S M
School of Electrical Engineering, College of Engineering, Universiti Teknologi MARA, Shah Alam, 40450, Malaysia.
Wireless Communication Centre, Faculty of Electrical Engineering, Universiti Teknologi Malaysia, 81310, UTM Johor Bahru, Malaysia.
Sci Rep. 2024 Oct 1;14(1):22759. doi: 10.1038/s41598-024-73520-7.
Due to the limited hydrophobic properties of porcelain insulators, applying anti-pollution flashover coatings is crucial to enhance their functionality. This research outlines a classification system for assessing contamination levels on 22 kV porcelain insulators, both with and without coatings. It synthesizes six classification criteria derived through both numerical simulations and experimental studies to effectively gauge contamination severity. The study examined insulators treated with Room Temperature Vulcanizing (RTV) silicone under three different conditions: uncoated, partially coated, and fully coated. Additionally, the research assessed the effects of humidity on these polluted insulators to understand environmental impacts on their performance. The criteria, which are the flashover voltage (x), fifth to third harmonics of leakage current (x), maximum electric field (x), total harmonic index (x), insulation resistance (x) and dielectric loss (x), were proposed for evaluating the insulator's string condition. The finite element method (FEM) was used to simulate an electric field. Then, based on the proposed criteria, the performances of the Random Forest (RF), Support Vector Machine (SVM), K-Nearest Neighbor (KNN), and Multi-layer Perceptron (MLP) have been trained and compared to classify polluted insulator conditions with and without coating. The established criteria facilitate precise monitoring of the condition of high-voltage insulators, ensuring quick and effective responses that support the stability of the electrical power system.
由于瓷绝缘子的疏水性能有限,应用防污闪涂层对于增强其功能至关重要。本研究概述了一种用于评估22 kV有涂层和无涂层瓷绝缘子污染水平的分类系统。它综合了通过数值模拟和实验研究得出的六个分类标准,以有效衡量污染严重程度。该研究考察了在三种不同条件下用室温硫化(RTV)硅橡胶处理的绝缘子:未涂层、部分涂层和完全涂层。此外,该研究评估了湿度对这些污染绝缘子的影响,以了解环境对其性能的影响。提出了用于评估绝缘子串状态的标准,即闪络电压(x)、泄漏电流的五次至三次谐波(x)、最大电场(x)、总谐波指数(x)、绝缘电阻(x)和介电损耗(x)。使用有限元方法(FEM)模拟电场。然后,基于提出的标准,对随机森林(RF)、支持向量机(SVM)、K近邻(KNN)和多层感知器(MLP)的性能进行了训练和比较,以对有涂层和无涂层的污染绝缘子状态进行分类。既定标准有助于精确监测高压绝缘子的状态,确保快速有效的响应,支持电力系统的稳定性。