TMSDNet: Transformer with multi‐scale dense network for single and multi‐view 3D reconstruction

Author:

Zhu Xiaoqiang12ORCID,Yao Xinsheng1ORCID,Zhang Junjie1,Zhu Mengyao1,You Lihua2,Yang Xiaosong2,Zhang Jianjun2,Zhao He3,Zeng Dan1

Affiliation:

1. School of Communication and Information Engineering Shanghai University Shanghai China

2. National Center for Computer Animation Bournemouth University Bournemouth UK

3. The R&D Department of Changzhou Micro‐Intelligence Co. Ltd. Changzhou Jiangsu China

Abstract

Abstract3D reconstruction is a long‐standing problem. Recently, a number of studies have emerged that utilize transformers for 3D reconstruction, and these approaches have demonstrated strong performance. However, transformer‐based 3D reconstruction methods tend to establish the transformation relationship between the 2D image and the 3D voxel space directly using transformers or rely solely on the powerful feature extraction capabilities of transformers. They ignore the crucial role played by deep multi‐scale representation of the object in the voxel feature domain, which can provide extensive global shape and local detail information about the object in a multi‐scale manner. In this article, we propose a novel framework TMSDNet (transformer with multi‐scale dense network) for single‐view and multi‐view 3D reconstruction with transformer to solve this problem. Based on our well‐designed combined‐transformer Block, which is canonical encoder–decoder architecture, voxel features with spatial order can be extracted from the input image, which are used to further extract multi‐scale global features in parallel using a multi‐scale residual attention module. Furthermore, a residual dense attention block is introduced for deep local features extraction and adaptive fusion. Finally, the reconstructed objects are produced with the voxel reconstruction block. Experiment results on the benchmarks such as ShapeNet and Pix3D datasets demonstrate that TMSDNet outperforms the existing state‐of‐the‐art reconstruction methods substantially.

Publisher

Wiley

Subject

Computer Graphics and Computer-Aided Design,Software

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