TY - JOUR
T1 - PolarGS
T2 - Polarimetric Cues for Ambiguity-Free Gaussian Splatting With Accurate Geometry Recovery
AU - Guo, Bo
AU - Wen, Sijia
AU - Zhao, Yifan
AU - Li, Jia
AU - Zheng, Zhiming
N1 - Publisher Copyright:
© 1992-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - Recent advances in surface reconstruction for 3D Gaussian Splatting (3DGS) have enabled remarkable geometric accuracy. However, their performance degrades in photometrically ambiguous regions such as reflective and textureless surfaces, where unreliable cues disrupt photometric consistency and hinder accurate geometry estimation. Reflected light is often partially polarized in a manner that reveals surface orientation, making polarization an optical complement to photometric cues in resolving such ambiguities. Therefore, we propose PolarGS, an optics-aware extension of RGB-based 3DGS that leverages polarization as an optical prior to resolve photometric ambiguities and enhance reconstruction accuracy. Specifically, we introduce two complementary modules: a polarization-guided photometric correction strategy, which ensures photometric consistency by identifying reflective regions via the Degree of Linear Polarization (DoLP) and refining reflective Gaussians with Color Refinement Maps; and a polarization-enhanced Gaussian densification mechanism for textureless area geometry recovery, which integrates both Angle and Degree of Linear Polarization (A&DoLP) into a PatchMatch-based depth completion process. This enables the back-projection and fusion of new Gaussians, leading to a more complete reconstruction. PolarGS is framework-agnostic and achieves superior geometric accuracy compared to state-of-the-art methods.
AB - Recent advances in surface reconstruction for 3D Gaussian Splatting (3DGS) have enabled remarkable geometric accuracy. However, their performance degrades in photometrically ambiguous regions such as reflective and textureless surfaces, where unreliable cues disrupt photometric consistency and hinder accurate geometry estimation. Reflected light is often partially polarized in a manner that reveals surface orientation, making polarization an optical complement to photometric cues in resolving such ambiguities. Therefore, we propose PolarGS, an optics-aware extension of RGB-based 3DGS that leverages polarization as an optical prior to resolve photometric ambiguities and enhance reconstruction accuracy. Specifically, we introduce two complementary modules: a polarization-guided photometric correction strategy, which ensures photometric consistency by identifying reflective regions via the Degree of Linear Polarization (DoLP) and refining reflective Gaussians with Color Refinement Maps; and a polarization-enhanced Gaussian densification mechanism for textureless area geometry recovery, which integrates both Angle and Degree of Linear Polarization (A&DoLP) into a PatchMatch-based depth completion process. This enables the back-projection and fusion of new Gaussians, leading to a more complete reconstruction. PolarGS is framework-agnostic and achieves superior geometric accuracy compared to state-of-the-art methods.
KW - 3D Gaussian splatting
KW - 3D reconstruction
KW - polarization
KW - surface reconstruction
UR - https://www.scopus.com/pages/publications/105039940831
U2 - 10.1109/TIP.2026.3694188
DO - 10.1109/TIP.2026.3694188
M3 - 文章
AN - SCOPUS:105039940831
SN - 1057-7149
VL - 35
SP - 5439
EP - 5451
JO - IEEE Transactions on Image Processing
JF - IEEE Transactions on Image Processing
ER -