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Published on: June 12, 2015
GeoStyler: A Generalizable Geometry-Aware Diffusion-Based Approach for Direct 3D Gaussian Style Transfer.
Summary
GeoStyler directly generates high-fidelity, multi-view consistent stylized 3D scenes quickly. It uses a diffusion model and novel attention mechanism to ensure geometric integrity and stylistic coherence, outperforming prior methods.
Area of Science:
- Computer Vision
- Computer Graphics
- Artificial Intelligence
Background:
- Direct 3D scene stylization from sparse views is challenging due to slow optimization methods and geometric corruption.
- Existing direct methods often cause visual artifacts by rigidly decoupling geometry and appearance.
Purpose of the Study:
- To introduce GeoStyler, a direct framework for high-fidelity, multi-view consistent stylized 3D scenes.
- To accelerate the 3D scene stylization process while maintaining geometric integrity.
Main Methods:
- Leveraging a diffusion model with a novel hybrid query formulation in self-attention to generate geometrically consistent stylized 2D images.
- Embedding cross-view geometric information into queries and style information into keys/values for 3D consistency and structure preservation.
- Utilizing a geometrically-aware latent initialization and a decoupled reconstruction network for 3D Gaussian representation.
Main Results:
- GeoStyler generates stylized 3D scenes in seconds with high fidelity and multi-view consistency.
- Achieved state-of-the-art performance on large-scale benchmarks like RealEstate10K and ACID.
- Demonstrated significant speedup compared to previous methods in stylization quality.
Conclusions:
- GeoStyler effectively addresses limitations of previous 3D scene stylization techniques.
- The framework successfully balances stylization quality with geometric structural integrity.
- Offers a fast and robust solution for direct 3D scene stylization.
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