基于改进稀疏表示的变电站保护压板状态辨识
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三峡大学 电气与新能源学院 宜昌443002

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TM732

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国家自然科学基金(61876097)资助


Status Identification of Substation Protection Plate Based on Improved Sparse Representation
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College of Electrical Engineering & New Energy, China Three Gorges University, Yichang 443002, China

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    摘要:

    鉴于保护屏柜柜门的镜面反射,导致通过图像识别压板状态准确率较低的问题。提出一种基于改进稀疏表示的变电站保护压板状态辨识方法,在消除高光干扰的基础上,实现压板状态辨识。针对高光干扰问题,首先利用二维最大类间方差法检测图像中的高光区域,然后改进稀疏表示修复算法,实现对图像中高光干扰的消除。对于修复后图像,再根据最小外接矩形法对保护压板进行状态辨识。最后,通过有无高光干扰的两组对照仿真分析检验了所提方法的有效性和准确性。其中,其中对无高光干扰的200个不同型号的压板样本进行状态辨识,最小外接矩形法的准确率为98.0%,优于倾角辨识法的83.5%,对存在高光干扰的240个图像样本采用改进稀疏表示算法进行状态辨识,其准确率可以达到97.92%。

    Abstract:

    In view of the specular reflection of the protection panel and cabinet door, the accuracy of identifying the protection plate state through image is low. A state identification method of substation protection platen based on improved sparse representation is proposed. On the basis of eliminating high light interference, the platen state identification is realized. Aiming at the problem of highlight interference, firstly, the two-dimensional maximum interclass variance method is used to detect the highlight region in the image, and then the sparse representation repair algorithm is improved to eliminate the highlight interference in the image. For the repaired image, the state of the protective pressing plate is identified according to the minimum circumscribed rectangle method. Finally, the effectiveness and accuracy of the proposed method are verified by two groups of comparative simulation analysis with or without highlight interference. Among them, for 200 different types of platen samples without high light interference, the accuracy of the minimum external rectangle method is 98.0%, which is better than 83.5% of the inclination identification method. For 240 image samples with high light interference, the improved sparse representation algorithm is used for state identification, and the accuracy can reach 97.92%.

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李镇翰,舒征宇,高健,姚景岩.基于改进稀疏表示的变电站保护压板状态辨识[J].电子测量技术,2021,44(23):86-92

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  • 在线发布日期: 2024-07-02
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