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Tight Sandstone Image Augmentation for Image Identification Using Deep Learning

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摘要 Intelligent identification of sandstone slice images using deep learning technology is the development trend of mineral identification,and accurate mineral particle segmentation is the most critical step for intelligent identification.A typical identification model requires many training samples to learn as many distinguishable features as possible.However,limited by the difficulty of data acquisition,the high cost of labeling,and privacy protection,this has led to a sparse sample number and cannot meet the training requirements of deep learning image identification models.In order to increase the number of samples and improve the training effect of deep learning models,this paper proposes a tight sandstone image data augmentation method by combining the advantages of the data deformation method and the data oversampling method in the Putaohua reservoir in the Sanzhao Sag of the Songliao Basin as the target area.First,the Style Generative Adversarial Network(StyleGAN)is improved to generate high-resolution tight sandstone images to improve data diversity.Second,we improve the Automatic Data Augmentation(AutoAugment)algorithm to search for the optimal augmentation strategy to expand the data scale.Finally,we design comparison experiments to demonstrate that this method has obvious advantages in generating image quality and improving the identification effect of deep learning models in real application scenarios.
出处 《Computer Systems Science & Engineering》 SCIE EI 2023年第10期1209-1231,共23页 计算机系统科学与工程(英文)
基金 This research was funded by the National Natural Science Foundation of China(Project No.42172161) Heilongjiang Provincial Natural Science Foundation of China(Project No.LH2020F003) Heilongjiang Provincial Department of Education Project of China(Project No.UNPYSCT-2020144) Northeast Petroleum University Guided Innovation Fund(2021YDL-12).
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