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视觉与机器人

3D 视觉

三维重建、NeRF、Gaussian Splatting、点云和空间智能。

今日/当前日期收录 1 信号源:cs.CV, cs.GR, cs.RO
2606.18826 2026-06-18 physics.optics cs.CV eess.IV 新提交 专题 90

EDoF-NeRF: extended depth-of-field neural radiance fields using a coded aperture camera

EDoF-NeRF: 使用编码孔径相机扩展景深的神经辐射场

Yoshiyuki Shirasaki, Ryoichi Horisaki

发表机构 * Department of Information Physics and Computing, Graduate School of Information Science and Technology, The University of Tokyo(信息物理与计算系,信息科学与技术研究生学校,东京大学)

专题命中 NeRF :扩展景深NeRF,编码孔径相机

AI总结 提出一种通过编码孔径相机扩展景深的方法,构建高保真神经辐射场,实现从不同视角图像渲染新视图,并验证其优于传统孔径相机。

详情
AI中文摘要

我们提出了一种扩展景深(DoF)的方法,用于构建高保真神经辐射场(NeRF)——一种基于隐式神经表示、从不同视角捕获的图像数据集渲染逼真新视图的新兴技术。DoF与光量之间的权衡不仅存在于传统相机中,也存在于NeRF中,因为NeRF使用的数据集是由这些相机捕获的。为了解决这个问题,我们在相机光阑处引入编码孔径,在散焦条件下保留空间频率分量。我们开发了一个将编码孔径纳入NeRF的相机模型,允许直接输入编码图像,并能够生成具有扩展景深的新视图。我们通过仿真和实验验证了所提出的方法,称为扩展景深NeRF(EDoF-NeRF),并证明了其相比传统孔径相机的优越性能。

英文摘要

We propose a method for extending the depth-of-field (DoF) to construct high-fidelity neural radiance fields (NeRF) -- an emerging technique for rendering photorealistic novel views from a dataset of images captured at different viewpoints, based on implicit neural representations. The trade-off between DoF and light quantity is inherent not only in conventional cameras but also in NeRF, since the datasets used by NeRF are captured by these cameras. To address this issue, we introduce a coded aperture placed at the camera pupil, preserving spatial frequency components under defocused conditions. We develop a camera model incorporating coded apertures into NeRF, allowing direct input of coded images and enabling the generation of novel views with an extended DoF. We validate the proposed method, termed extended DoF-NeRF (EDoF-NeRF), through simulations and experiments, demonstrating its superior performance compared to conventional aperture cameras.