Abstract
Deep learning based image-to-image translation methods aim at learning the joint distribution of the two domains and finding transformations between them. Despite recent GAN (Generative Adversarial Network) based methods have shown compelling results, they are prone to fail at preserving image-objects and maintaining translation consistency, which reduces their practicality on tasks such as generating large-scale training data for different domains. To address this problem, we purpose a structure-aware image-to-image translation network, which is composed of encoders, generators, discriminators and parsing nets for the two domains, respectively, in a unified framework. The purposed network generates more visually plausible images compared to competing methods on different image-translation tasks. In addition, we quantitatively evaluate different methods by training Faster-RCNN and YOLO with datasets generated from the image-translation results and demonstrate significant improvement on the detection accuracies by using the proposed image-object preserving network.
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CITATION STYLE
Huang, S. W., Lin, C. T., Chen, S. P., Wu, Y. Y., Hsu, P. H., & Lai, S. H. (2018). AugGAN: Cross domain adaptation with GAN-based data augmentation. In Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) (Vol. 11213 LNCS, pp. 731–744). Springer Verlag. https://doi.org/10.1007/978-3-030-01240-3_44
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