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HR-NeRF:提升高光场景表示的真实感和准确性。

HR-NeRF: advancing realism and accuracy in highlight scene representation.

作者信息

Dai Shufan, Wang Shanqin

机构信息

Chuzhou Polytechnic, Chuzhou, China.

出版信息

Front Neurorobot. 2025 Apr 16;19:1558948. doi: 10.3389/fnbot.2025.1558948. eCollection 2025.

Abstract

NeRF and its variants excel in novel view synthesis but struggle with scenes featuring specular highlights. To address this limitation, we introduce the Highlight Recovery Network (HRNet), a new architecture that enhances NeRF's ability to capture specular scenes. HRNet incorporates Swish activation functions, affine transformations, multilayer perceptrons (MLPs), and residual blocks, which collectively enable smooth non-linear transformations, adaptive feature scaling, and hierarchical feature extraction. The residual connections help mitigate the vanishing gradient problem, ensuring stable training. Despite the simplicity of HRNet's components, it achieves impressive results in recovering specular highlights. Additionally, a density voxel grid enhances model efficiency. Evaluations on four inward-facing benchmarks demonstrate that our approach outperforms NeRF and its variants, achieving a 3-5 dB PSNR improvement on each dataset while accurately capturing scene details. Furthermore, our method effectively preserves image details without requiring positional encoding, rendering a single scene in ~18 min on an NVIDIA RTX 3090 Ti GPU.

摘要

神经辐射场(NeRF)及其变体在新视角合成方面表现出色,但在处理具有镜面高光的场景时却存在困难。为了解决这一局限性,我们引入了高光恢复网络(HRNet),这是一种新的架构,它增强了NeRF捕捉镜面场景的能力。HRNet结合了Swish激活函数、仿射变换、多层感知器(MLP)和残差块,这些共同实现了平滑的非线性变换、自适应特征缩放和分层特征提取。残差连接有助于缓解梯度消失问题,确保训练稳定。尽管HRNet的组件很简单,但它在恢复镜面高光方面取得了令人印象深刻的结果。此外,密度体素网格提高了模型效率。在四个向内视角基准测试中的评估表明,我们的方法优于NeRF及其变体,在每个数据集上实现了3-5dB的峰值信噪比(PSNR)提升,同时准确地捕捉了场景细节。此外,我们无需位置编码就能有效地保留图像细节,在NVIDIA RTX 3090 Ti GPU上渲染单个场景大约需要18分钟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a819/12041011/5ff7c2e6fd29/fnbot-19-1558948-g0001.jpg

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