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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 150 of 85 papers

TitleStatusHype
Colorful Diffuse Intrinsic Image Decomposition in the WildCode3
Intrinsic Image Decomposition via Ordinal ShadingCode2
DPF: Learning Dense Prediction Fields with Weak SupervisionCode1
A General Albedo Recovery Approach for Aerial Photogrammetric Images through Inverse RenderingCode1
EndoMUST: Monocular Depth Estimation for Robotic Endoscopy via End-to-end Multi-step Self-supervised TrainingCode1
Estimating Reflectance Layer from A Single Image: Integrating Reflectance Guidance and Shadow/Specular Aware LearningCode1
Exploiting Diffusion Prior for Generalizable Dense PredictionCode1
Complementary Feature Enhanced Network with Vision Transformer for Image DehazingCode1
Illumination-Aware Image Quality Assessment for Enhanced Low-light ImageCode1
Intrinsic Image Decomposition Using Point Cloud RepresentationCode1
Intrinsic Decomposition of Document Images In-the-WildCode1
Outdoor inverse rendering from a single image using multiview self-supervisionCode1
Physically Inspired Dense Fusion Networks for RelightingCode1
PIE-Net: Photometric Invariant Edge Guided Network for Intrinsic Image DecompositionCode1
PS-Diffusion: Photorealistic Subject-Driven Image Editing with Disentangled Control and AttentionCode1
Seeing a Rose in Five Thousand WaysCode1
Creating a Forensic Database of Shoeprints from Online Shoe Tread PhotosCode1
Unsupervised Learning for Intrinsic Image Decomposition from a Single ImageCode1
MLI-NeRF: Multi-Light Intrinsic-Aware Neural Radiance FieldsCode0
Unsupervised Intrinsic Image Decomposition with LiDAR IntensityCode0
Intrinsic Image Transfer for Illumination ManipulationCode0
Joint Learning of Intrinsic Images and Semantic SegmentationCode0
ShadingNet: Image Intrinsics by Fine-Grained Shading DecompositionCode0
SIGNet: Intrinsic Image Decomposition by a Semantic and Invariant Gradient Driven Network for Indoor ScenesCode0
Learning Blind Video Temporal ConsistencyCode0
HyperDID: Hyperspectral Intrinsic Image Decomposition with Deep Feature EmbeddingCode0
Learning Intrinsic Image Decomposition from Watching the WorldCode0
Unified Depth Prediction and Intrinsic Image Decomposition from a Single Image via Joint Convolutional Neural FieldsCode0
Single Image Intrinsic Decomposition without a Single Intrinsic Image0
Intrinsic Autoencoders for Joint Neural Rendering and Intrinsic Image Decomposition0
Single Image Layer Separation using Relative Smoothness0
Intrinsic Decomposition of Image Sequences From Local Temporal Variations0
Intrinsic Image Decomposition for Robust Self-supervised Monocular Depth Estimation on Reflective Surfaces0
Intrinsic Image Decomposition using Paradigms0
3D Face Mask Presentation Attack Detection Based on Intrinsic Image Analysis0
Intrinsic Image Transformation via Scale Space Decomposition0
Intrinsic Scene Decomposition From RGB-D images0
Invariant Descriptors for Intrinsic Reflectance Optimization0
JoIN: Joint GANs Inversion for Intrinsic Image Decomposition0
Label Denoising Adversarial Network (LDAN) for Inverse Lighting of Face Images0
Label Denoising Adversarial Network (LDAN) for Inverse Lighting of Faces0
Learning Data-driven Reflectance Priors for Intrinsic Image Decomposition0
Learning Intrinsic Images for Clothing0
Learning Lightness From Human Judgement on Relative Reflectance0
Learning Ordinal Relationships for Mid-Level Vision0
Learning to Factorize and Relight a City0
Leveraging Multi-view Image Sets for Unsupervised Intrinsic Image Decomposition and Highlight Separation0
Light Source Separation and Intrinsic Image Decomposition Under AC Illumination0
Measured Albedo in the Wild: Filling the Gap in Intrinsics Evaluation0
Non-Local Intrinsic Decomposition With Near-Infrared Priors0
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