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Intrinsic Image Decomposition

Intrinsic Image Decomposition is the process of separating an image into its formation components such as reflectance (albedo) and shading (illumination). Reflectance is the color of the object, invariant to camera viewpoint and illumination conditions, whereas shading, dependent on camera viewpoint and object geometry, consists of different illumination effects, such as shadows, shading and inter-reflections. Using intrinsic images, instead of the original images, can be beneficial for many computer vision algorithms. For instance, for shape-from-shading algorithms, the shading images contain important visual cues to recover geometry, while for segmentation and detection algorithms, reflectance images can be beneficial as they are independent of confounding illumination effects. Furthermore, intrinsic images are used in a wide range of computational photography applications, such as material recoloring, relighting, retexturing and stylization.

Source: CNN based Learning using Reflection and Retinex Models for Intrinsic Image Decomposition

Papers

Showing 125 of 85 papers

TitleStatusHype
EndoMUST: Monocular Depth Estimation for Robotic Endoscopy via End-to-end Multi-step Self-supervised TrainingCode1
Objective, Absolute and Hue-aware Metrics for Intrinsic Image Decomposition on Real-World Scenes: A Proof of Concept0
SAIL: Self-supervised Albedo Estimation from Real Images with a Latent Diffusion Model0
PRISM: A Unified Framework for Photorealistic Reconstruction and Intrinsic Scene Modeling0
Intrinsic Image Decomposition for Robust Self-supervised Monocular Depth Estimation on Reflective Surfaces0
Single-image Reflectance and Transmittance Estimation from Any Flatbed Scanner0
PS-Diffusion: Photorealistic Subject-Driven Image Editing with Disentangled Control and AttentionCode1
MLI-NeRF: Multi-Light Intrinsic-Aware Neural Radiance FieldsCode0
Colorful Diffuse Intrinsic Image Decomposition in the WildCode3
A General Albedo Recovery Approach for Aerial Photogrammetric Images through Inverse RenderingCode1
Unsupervised Intrinsic Image Decomposition with LiDAR Intensity Enhanced Training0
Exploring the Common Appearance-Boundary Adaptation for Nighttime Optical Flow0
A Theory of Joint Light and Heat Transport for Lambertian Scenes0
Exploiting Diffusion Prior for Generalizable Dense PredictionCode1
HyperDID: Hyperspectral Intrinsic Image Decomposition with Deep Feature EmbeddingCode0
Intrinsic Image Decomposition via Ordinal ShadingCode2
Intrinsic Image Decomposition Using Point Cloud RepresentationCode1
Measured Albedo in the Wild: Filling the Gap in Intrinsics Evaluation0
JoIN: Joint GANs Inversion for Intrinsic Image Decomposition0
DPF: Learning Dense Prediction Fields with Weak SupervisionCode1
Unsupervised Intrinsic Image Decomposition with LiDAR IntensityCode0
Light Source Separation and Intrinsic Image Decomposition Under AC Illumination0
Complementary Intrinsics From Neural Radiance Fields and CNNs for Outdoor Scene Relighting0
Seeing a Rose in Five Thousand WaysCode1
Estimating Reflectance Layer from A Single Image: Integrating Reflectance Guidance and Shadow/Specular Aware LearningCode1
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