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Unsupervised Structure-Texture Separation Network for Oracle Character Recognition

delete2022-01-01
delete13
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OA
AI
M
Mei Wang
W
Weihong Deng *
刘
刘程琳 (Cheng‐Lin Liu)
DOI:10.1109/TIP.2022.3165989delete
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摘要

摘要

En 中文
Oracle bone script is the earliest-known Chinese writing system of the Shang dynasty and is precious to archeology and philology. However, real-world scanned oracle data are rare and few experts are available for annotation which make the automatic recognition of scanned oracle characters become a challenging task. Therefore, we aim to explore unsupervised domain adaptation to transfer knowledge from handprinted oracle data, which are easy to acquire, to scanned domain. We propose a structure-texture separation network (STSN), which is an end-to-end learning framework for joint disentanglement, transformation, adaptation and recognition. First, STSN disentangles features into structure (glyph) and texture (noise) components by generative models, and then aligns handprinted and scanned data in structure feature space such that the negative influence caused by serious noises can be avoided when adapting. Second, transformation is achieved via swapping the learned textures across domains and a classifier for final classification is trained to predict the labels of the transformed scanned characters. This not only guarantees the absolute separation, but also enhances the discriminative ability of the learned features. Extensive experiments on Oracle-241 dataset show that STSN outperforms other adaptation methods and successfully improves recognition performance on scanned data even when they are contaminated by long burial and careless excavation.
Keyword:
Character recognition
Bones
Adaptation models
Training
Feature extraction
Writing
Transforms
Oracle character recognition
unsupervised domain adaptation
feature disentanglement
generative adversarial network

期刊

IEEE Transactions on Image Processing 封面图
IEEE Transactions on Image Processing
IF:
13.7
论文数:
1.0W
被引数:
8.4W

机构

B
beijing university of posts & telecommunications
学者数:
1.4W
论文数: 1.2W
被引数: 9
C
chinese academy of sciences
学者数:
56.7W
论文数: 45.0W
被引数: 704
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