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Text Perceptron: Towards End-to-End Arbitrary-Shaped Text Spotting

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Many approaches have recently been proposed to detect irregular scene text and achieved promising results. However, their localization results may not well satisfy the following text recognition part mainly because of two reasons: 1) recognizing arbitrary shaped text is still a challenging task, and 2) prevalent non-trainable pipeline strategies between text detection and text recognition will lead to suboptimal performances. To handle this incompatibility problem, in this paper we propose an end-to-end trainable text spotting approach named Text Perceptron. Concretely, Text Perceptron first employs an efficient segmentation-based text detector that learns the latent text reading order and boundary information. Then a novel Shape Transform Module (abbr. STM) is designed to transform the detected feature regions into regular morphologies without extra parameters. It unites text detection and the following recognition part into a whole framework, and helps the whole network achieve global optimization. Experiments show that our method achieves competitive performance on two standard text benchmarks, i.e., ICDAR 2013 and ICDAR 2015, and also obviously outperforms existing methods on irregular text benchmarks SCUT-CTW1500 and Total-Text.

Liang Qiao, Sanli Tang, Zhanzhan Cheng, Yunlu Xu, Yi Niu, Shiliang Pu, Fei Wu• 2020

Related benchmarks

TaskDatasetResultRank
Text DetectionICDAR 2015
Precision92.3
171
Text DetectionCTW1500 (test)
Precision88.7
157
Scene Text DetectionICDAR 2015 (test)
F1 Score87.1
150
Text DetectionTotal-Text
Recall81.8
139
Text DetectionTotal-Text (test)
F-Measure85.2
126
Text DetectionICDAR 2015 (test)
F1 Score87.1
108
Scene Text DetectionTotalText (test)
Recall81.8
106
Scene Text SpottingTotal-Text (test)
F-measure (None)69.7
105
Text DetectionICDAR 2013 (test)
F1 Score91.7
88
End-to-End Text SpottingICDAR 2015
Strong Score80.5
80
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