接入 API · 个人 AI 解读连接自己的模型解读资讯,浏览新闻无需配置。
返回资讯列表
前沿研究社区 / 第三方国际

4DGS-JEPA: Temporally Compositional Joint-Embedding Prediction for Dynamic Gaussian Splatting

arXiv 人工智能论文 · 发布
今日摘要使用自己的 API,仅供个人查看

来源摘要

arXiv:2609.25036v1 Announce Type: new Abstract: Dynamic Gaussian Splatting provides an explicit representation of evolving 3D scenes, but existing approaches are primarily optimized for reconstruction, future-state generation, or rendering rather than for learning reusable predictive dynamics. We propose 4DGS-JEPA, a Gaussian-native joint-embedding predictive architecture for causal multi-horizon prediction over dynamic Gaussian scenes. The model uses a hierarchical scene-, motion-group-, and Gaussian-level representation together with a horizon-conditioned transition operator that supports both direct prediction and recursive rollout. Its central principle is temporal composition: different chronological transition paths reaching the same future endpoint should produce compatible predictive states. Endpoint and multi-horizon path supervision anchor these predictions to future target embeddings, while a selective geometry decoder and geometry-level composition ground the learned dynamics in consistent group motion and Gaussian geometry without requiring complete future appearance reconstruction. We further introduce a hybrid correspondence mechanism that combines persistent canonical identity with residual optimal-transport matching under reordering and topology change. We characterize zero-loss path agreement and finite-error rollout accumulation theoretically. Three controlled experiments provide mechanism-level evidence that temporal composition reduces latent path dependence while retaining predictive accuracy, geometry-level composition improves consistency of decoded motion, and hybrid correspondence preserves reliable identity while remaining robust when correspondence becomes ambiguous. Together, 4DGS-JEPA provides a predictive, temporally compositional formulat

阅读原始来源
来源
arXiv 人工智能论文 · 社区 / 第三方
来源发布
2026/09/23 12:00
首次采集
2026/09/23 17:59

本文为公开信息索引与摘要,详情及后续变化请以原始来源为准。

把 AI 雷达放到桌面

在支持安装的浏览器中,可以将本站作为应用打开。

安装入口取决于浏览器;应用和网站使用同一份最新内容。

查看完整安装指南