The ongoing advances in computational photography have introduced a range of new imaging techniques for capturing multidimensional visual data such as light fields, BRDFs, BTFs, and more. A key challenge inherent to such imaging techniques is the large amount of high dimensional visual data that is produced, often requiring GBs, or even TBs, of storage. Moreover, the utilization of these datasets in real time applications poses many difficulties due to the large memory footprint. Furthermore, the acquisition of large-scale visual data is very challenging and expensive in most cases. This thesis makes several contributions with regards to acquisition, compression, and real time rendering of high dimensional visual data in computer graphics a...
Recent imaging technologies are rapidly evolving for sampling richer and more immersive representati...
Efficiently capturing high-dimensional optical signals, such as temporal dynamics, depth, perspectiv...
Light field (LF) acquisition technologies capture the spatial and angular information present in sce...
The ongoing advances in computational photography have introduced a range of new imaging techniques ...
The introduction and recent advancements of computational photography have revolutionized the imagin...
This document provides additional discussion and results in support of the primary text. Our work bu...
Figure 1: We show that it is possible to compute a sparse approximation of a BRDF from an image (a) ...
We present a new compressed sensing framework for reconstruction of incomplete and possibly noisy im...
This paper presents a novel approach to capture light field in camera arrays based on the compressiv...
In this article we present a novel dictionary learning framework designed for compression and sampli...
In the present-day scenario, there are various methods to process and represent a signal according t...
The method of coded snapshots has been proposed recently for compressive acquisition of video data t...
This paper presents a novel compressed sensing (CS) algorithm and camera design for light field vide...
Image representation is important for efficient image process-ing, data compression and pattern reco...
Structure exists in all forms of visual data in the nature. In this thesis, we focus on modeling the...
Recent imaging technologies are rapidly evolving for sampling richer and more immersive representati...
Efficiently capturing high-dimensional optical signals, such as temporal dynamics, depth, perspectiv...
Light field (LF) acquisition technologies capture the spatial and angular information present in sce...
The ongoing advances in computational photography have introduced a range of new imaging techniques ...
The introduction and recent advancements of computational photography have revolutionized the imagin...
This document provides additional discussion and results in support of the primary text. Our work bu...
Figure 1: We show that it is possible to compute a sparse approximation of a BRDF from an image (a) ...
We present a new compressed sensing framework for reconstruction of incomplete and possibly noisy im...
This paper presents a novel approach to capture light field in camera arrays based on the compressiv...
In this article we present a novel dictionary learning framework designed for compression and sampli...
In the present-day scenario, there are various methods to process and represent a signal according t...
The method of coded snapshots has been proposed recently for compressive acquisition of video data t...
This paper presents a novel compressed sensing (CS) algorithm and camera design for light field vide...
Image representation is important for efficient image process-ing, data compression and pattern reco...
Structure exists in all forms of visual data in the nature. In this thesis, we focus on modeling the...
Recent imaging technologies are rapidly evolving for sampling richer and more immersive representati...
Efficiently capturing high-dimensional optical signals, such as temporal dynamics, depth, perspectiv...
Light field (LF) acquisition technologies capture the spatial and angular information present in sce...