Sven Wanner

dblp:08/10238 · DBLP profile ↗
← Back
5ranked-venue papers
4as first author
0since 2021 · last 2014
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Artificial intelligence and machine learning · 5 · 4 first-authorGraphics, computer vision, multimedia, augmented reality and games · 4 · 3 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer graphics and multimedia
5 papers
Image and video processing · 55% Computational photography and imaging · 45%
Artificial intelligence
4 papers
3D vision · 69% Segmentation and scene understanding · 31%
Theoretical computer science
2 papers
Mathematical optimization · 100%

Topics — the 11 heaviest of 11, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Computational photography and imaging
light field imaging
0.642014
Variational Light Field Analysis for Disparity Estimation and Super-Resolution · IEEE Trans. Pattern Anal. Mach. Intell. 2014
Globally Consistent Multi-label Assignment on the Ray Space of 4D Light Fields · CVPR 2013
Spatial and Angular Variational Super-Resolution of 4D Light Fields · ECCV (5) 2012
Image and video processing › super-resolution
light field super-resolution
0.322014
Variational Light Field Analysis for Disparity Estimation and Super-Resolution · IEEE Trans. Pattern Anal. Mach. Intell. 2014
Spatial and Angular Variational Super-Resolution of 4D Light Fields · ECCV (5) 2012
Image and video processing
super-resolution
0.322014
Variational Light Field Analysis for Disparity Estimation and Super-Resolution · IEEE Trans. Pattern Anal. Mach. Intell. 2014
Spatial and Angular Variational Super-Resolution of 4D Light Fields · ECCV (5) 2012
Image and video processing › stereo vision
stereo matching
0.212014
Variational Light Field Analysis for Disparity Estimation and Super-Resolution · IEEE Trans. Pattern Anal. Mach. Intell. 2014
Computer vision › Segmentation and scene understanding › semantic segmentation
multi-label segmentation
0.212013
Globally Consistent Multi-label Assignment on the Ray Space of 4D Light Fields · CVPR 2013
Computer vision › 3D vision › stereo vision
stereo matching
0.212013
The Variational Structure of Disparity and Regularization of 4D Light Fields · CVPR 2013
Computational photography and imaging › light field imaging
light field processing
0.212013
The Variational Structure of Disparity and Regularization of 4D Light Fields · CVPR 2013
Computer vision › 3D vision
depth estimation
0.112012
Globally consistent depth labeling of 4D light fields · CVPR 2012
Image and video processing › super-resolution
spatial and angular super-resolution
0.112012
Spatial and Angular Variational Super-Resolution of 4D Light Fields · ECCV (5) 2012
Mathematical optimization
convex relaxation
0.122013
Globally Consistent Multi-label Assignment on the Ray Space of 4D Light Fields · CVPR 2013
Globally consistent depth labeling of 4D light fields · CVPR 2012
Computer vision › 3D vision › 3d reconstruction
multi-view stereo
0.112014
Variational Light Field Analysis for Disparity Estimation and Super-Resolution · IEEE Trans. Pattern Anal. Mach. Intell. 2014

Methods — techniques the papers use, named apart from their topics

variational framework · 1.3convex relaxation · 0.8multi-label optimization · 0.5constrained labeling · 0.4variational method · 0.4epipolar plane image analysis · 0.4convex priors · 0.3variational super-resolution · 0.1
YearPublicationVenuePosition
2014 Variational Light Field Analysis for Disparity Estimation and Super-Resolution
abstract
We develop a continuous framework for the analysis of 4D light fields, and describe novel variational methods for disparity reconstruction as well as spatial and angular super-resolution. Disparity maps are estimated locally using epipolar plane image analysis without the need for expensive matching cost minimization. The method works fast and with inherent subpixel accuracy since no discretization of the disparity space is necessary. In a variational framework, we employ the disparity maps to generate super-resolved novel views of a scene, which corresponds to increasing the sampling rate of the 4D light field in spatial as well as angular direction. In contrast to previous work, we formulate the problem of view synthesis as a continuous inverse problem, which allows us to correctly take into account foreshortening effects caused by scene geometry transformations. All optimization problems are solved with state-of-the-art convex relaxation techniques. We test our algorithms on a number of real-world examples as well as our new benchmark data set for light fields, and compare results to a multiview stereo method. The proposed method is both faster as well as more accurate. Data sets and source code are provided online for additional evaluation.
Sven Wanner, Bastian Goldlücke
IEEE Trans. Pattern Anal. Mach. Intell.1
2013 The Variational Structure of Disparity and Regularization of 4D Light Fields
abstract
Unlike traditional images which do not offer information for different directions of incident light, a light field is defined on ray space, and implicitly encodes scene geometry data in a rich structure which becomes visible on its epipolar plane images. In this work, we analyze regularization of light fields in variational frameworks and show that their variational structure is induced by disparity, which is in this context best understood as a vector field on epipolar plane image space. We derive differential constraints on this vector field to enable consistent disparity map regularization. Furthermore, we show how the disparity field is related to the regularization of more general vector-valued functions on the 4D ray space of the light field. This way, we derive an efficient variational framework with convex priors, which can serve as a fundament for a large class of inverse problems on ray space.
Bastian Goldlücke, Sven Wanner
CVPR2
2013 Globally Consistent Multi-label Assignment on the Ray Space of 4D Light Fields
abstract
We present the first variational framework for multi-label segmentation on the ray space of 4D light fields. For traditional segmentation of single images, features need to be extracted from the 2D projection of a three-dimensional scene. The associated loss of geometry information can cause severe problems, for example if different objects have a very similar visual appearance. In this work, we show that using a light field instead of an image not only enables to train classifiers which can overcome many of these problems, but also provides an optimal data structure for label optimization by implicitly providing scene geometry information. It is thus possible to consistently optimize label assignment over all views simultaneously. As a further contribution, we make all light fields available online with complete depth and segmentation ground truth data where available, and thus establish the first benchmark data set for light field analysis to facilitate competitive further development of algorithms.
Sven Wanner, Christoph N. Straehle, Bastian Goldlücke
CVPR1
2012 Globally consistent depth labeling of 4D light fields
abstract
We present a novel paradigm to deal with depth reconstruction from 4D light fields in a variational framework. Taking into account the special structure of light field data, we reformulate the problem of stereo matching to a constrained labeling problem on epipolar plane images, which can be thought of as vertical and horizontal 2D cuts through the field. This alternative formulation allows to estimate accurate depth values even for specular surfaces, while simultaneously taking into account global visibility constraints in order to obtain consistent depth maps for all views. The resulting optimization problems are solved with state-of-the-art convex relaxation techniques. We test our algorithm on a number of synthetic and real-world examples captured with a light field gantry and a plenoptic camera, and compare to ground truth where available. All data sets as well as source code are provided online for additional evaluation.
Sven Wanner, Bastian Goldlücke
CVPR1
2012 Spatial and Angular Variational Super-Resolution of 4D Light Fields
Sven Wanner, Bastian Goldlücke
ECCV (5)1