HVTR++: Image and Pose Driven Human Avatars Using Hybrid Volumetric-Textural Rendering.
IEEE Transactions on Visualization and Computer Graphics
|July 21, 2023
Summary
Hybrid Volumetric-Textural Rendering (HVTR++) synthesizes high-quality 3D human avatars using pose and view images. This novel method efficiently generates detailed avatars from complex motions, improving upon existing neural rendering techniques.
Area of Science:
- Computer Vision
- Computer Graphics
- Machine Learning
Background:
- Neural rendering methods excel at photorealistic human avatar generation.
- Existing methods struggle with detailed appearance due to limited driving signals like body poses.
- Low-dimensional signals fail to capture the full complexity of clothed human appearance.
Purpose of the Study:
- To develop a novel neural rendering pipeline for synthesizing high-quality 3D human avatars.
- To improve the faithfulness of avatar details by incorporating driving view images.
- To achieve efficient and high-quality avatar synthesis from arbitrary poses and views.
Main Methods:
- Proposed Hybrid Volumetric-Textural Rendering (HVTR++) pipeline.
- Learned pose and view image signals on a dense UV manifold for UV-aligned features.
- Constructed a 3D volumetric representation using a pose- and image-conditioned neural radiance field (PID-NeRF).
- Fused volumetric features with 2D textural features in image space.
- Employed a fast Generative Adversarial Network (GAN)-based textural renderer for high-resolution output.
Main Results:
- HVTR++ successfully synthesizes detailed 3D human avatars from arbitrary poses and views.
- The hybrid rendering approach handles complex motions and self-occlusions effectively.
- Achieved efficient inference times with high-quality avatar generation.
- Demonstrated state-of-the-art quantitative results compared to existing methods.
Conclusions:
- HVTR++ offers an efficient and high-quality solution for 3D human avatar synthesis.
- The integration of volumetric and textural rendering overcomes limitations of previous methods.
- The pipeline effectively preserves appearance details and handles complex dynamics.
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