AI-driven design innovation: the integration of computational methods in the analysis of Shuangdun Carved Symbols and product design

Yipeng Fan1, Yijing Chen2,3, Wenjing Liang4, Sharul Azim Bin Sharudinx5
1 College of Art and Design, Bengbu University, Bengbu, Anhui, 233000, China
2 School of Humanities & Art, Bengbu College of Technology and Business, Bengbu, Anhui, 233000, China
3
4 School of Art, Shanghai Zhongqiao Vocational and Technical University, Shanghai, 201514, China
5Faculty of Creative Arts, Universiti Malaysia, Kuala Lumpur, 50603, Malaysia

Abstract

Artificial intelligence technology can effectively improve the quality and efficiency of industrial design and manufacturing, so the study takes Shuangdun Carved Symbols of cultural products as an example, utilizes the generative adversarial neural network to carry out style migration processing in the design of Shuangdun Carved Symbols and their products, and constructs the DCGAN model to assist the design and generation of Shuangdun Carved Symbols of cultural products. After semantic analysis of the color symbols of Shuangdun Carved Symbols products generated with the aid of DCGAN model in this paper, quantitative and qualitative measurements are carried out. Users of Shuangdun Carved Symbols products rated the products after the style migration significantly higher than before the migration in terms of volumetricity, distance, emotion, character, and texture.CycleGAN and DCGAN models achieved the best overall results in terms of PSNR, SSIM, FID, and KID indicators. The DCGAN model with added spectral normalization and Res2Net outperformed the CycleGAN model in the ablation experiments. The overall user rating of the Shuangdun Carved Symbols product designed by the DCGAN model in this paper is 4.24, and the product has obtained more satisfactory evaluation results.

Keywords: artificial intelligence techniques, style migration, generative adversarial networks, Shuangdun Carved Symbols, product design