YOLO–DTAD: Dynamic Task Alignment Detection Model for Multicategory Power Defects Image

IF 5.6 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Runhai Jiao;Jiaji Liu;Kaihang Li;Ruojiao Qiao;Yanzhi Liu;Wenbiao Zhang
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引用次数: 0

Abstract

Inspection images of transmission lines from autonomous aerial vehicle (AAV) often contain complex backgrounds and multicategory of power defects. Similarities in categories and scale differences in objects make the traditional single-category detection methods of power defects have unacceptable errors. Therefore, in this article, the you only look once (YOLO)–dynamic task alignment detection (DTAD) model for images of multicategory power defects is constructed to ensure real-time detection of AAV. First, the detection head of DTAD embeds a feature extractor built by grouped convolution in a decoupled head structure of classification and localization, which further learns the task interaction features to improve the model performance. Second, based on the idea of exponential moving average (EMA), the EMA SlideLoss (ESLoss) function is proposed to self-study the intersection over union (IoU) threshold of the bounding box to control the balance between positive and negative samples and dynamically regulate the loss weights of the samples. Finally, normalized Wasserstein distance (NWD) is introduced to alleviate the regression bias of the multiscale object bounding box. Compared with other detectors, the proposed model reaches the mAP50 of 48.2% and 150 frames/s (FPS), respectively, in a private power dataset containing six categories of power defects, which achieves the best tradeoff between speed and accuracy. In addition, generalization experiments are also conducted on other four public datasets to prove the versatility and effectiveness of the proposed model, and the precision values are improved by about 3.1% on average.
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来源期刊
IEEE Transactions on Instrumentation and Measurement
IEEE Transactions on Instrumentation and Measurement 工程技术-工程:电子与电气
CiteScore
9.00
自引率
23.20%
发文量
1294
审稿时长
3.9 months
期刊介绍: Papers are sought that address innovative solutions to the development and use of electrical and electronic instruments and equipment to measure, monitor and/or record physical phenomena for the purpose of advancing measurement science, methods, functionality and applications. The scope of these papers may encompass: (1) theory, methodology, and practice of measurement; (2) design, development and evaluation of instrumentation and measurement systems and components used in generating, acquiring, conditioning and processing signals; (3) analysis, representation, display, and preservation of the information obtained from a set of measurements; and (4) scientific and technical support to establishment and maintenance of technical standards in the field of Instrumentation and Measurement.
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