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FLUX3D:扩散对齐稀疏表示实现高保真3D高斯生成

摘要

FLUX3D提出扩散对齐稀疏表示方法,解决图像转3D高斯泼溅中高频细节丢失问题。通过改进2D特征选择和跨模态对齐,在生成保真度上显著超越现有技术。

背景解释

3D高斯泼溅是新兴的3D表示方法,但现有方法在从单张图像生成时,因特征瓶颈和跨模态对齐不足,难以保留细节。FLUX3D通过结构化潜在表示和稀疏感知扩散模型,提升了生成质量,对3D内容创作有重要意义。

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Computer Science > Computer Vision and Pattern Recognition

arXiv:2606.24874v1 (cs)

[Submitted on 23 Jun 2026]

Title:FLUX3D: High-Fidelity 3D Gaussian Generation with Diffusion-Aligned Sparse Representation

Authors:Haorui Ji,Weizhe Liu,Hongdong Li,Hengkai Guo

View a PDF of the paper titled FLUX3D: High-Fidelity 3D Gaussian Generation with Diffusion-Aligned Sparse Representation, by Haorui Ji and 3 other authors

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Abstract:Sparse voxel representation has emerged as a scalable foundation for image-to-3D Gaussian Splatting (3DGS) generation, yet current methods struggle to preserve high-frequency visual details of input images due to two structural bottlenecks. First, they adopt discriminative 2D features optimized for semantic abstraction to construct sparse voxel latents, which suppress reconstructive cues and induce a representation bottleneck. Second, in the generation stage, standard diffusion transformers lack effective mechanisms to align dense 2D image tokens with sparse 3D voxel latents, resulting in a cross-modal correspondence bottleneck. To address these issues, we propose FLUX3D, a scalable image-to-3DGS framework that boosts both representation learning and cross-modal alignment during generation. We first revisit 2D feature selection for sparse-voxel-based 3D representation learning, propose Diffusion-Aligned Structured Latents (DA-SLAT) and couple it with a decoder-only architecture to improve 3DGS reconstruction fidelity. We also design a sparse-structure-aware diffusion framework, which integrates the Sparse-structure Multimodal Diffusion Transformer (SMDiT) and Modal-Aware Rotary Positional Embedding (MARoPE) to achieve geometry-agnostic 2D-3D alignment. Extensive benchmark experiments demonstrate that FLUX3D yields substantial improvements in appearance fidelity and significantly outperforms all state-of-the-art (SOTA) methods in generating high-quality 3DGS assets.

| | | | --- | --- | | Subjects: | Computer Vision and Pattern Recognition (cs.CV); Artificial Intelligence (cs.AI) | | Cite as: |arXiv:2606.24874[cs.CV] | | | (orarXiv:2606.24874v1[cs.CV] for this version) | | |https://doi.org/10.48550/arXiv.2606.24874<br>Focus to learn more<br>arXiv-issued DOI via DataCite |

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From: Haorui Ji \[view email]

[v1] Tue, 23 Jun 2026 17:52:21 UTC (7,623 KB)

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