Oreifej, Omar.
Robust Subspace Estimation Using Low-Rank Optimization Theory and Applications / [electronic resource] : by Omar Oreifej, Mubarak Shah. - VI, 114 p. 41 illus., 39 illus. in color. online resource. - The International Series in Video Computing, 12 1571-5205 ; . - The International Series in Video Computing, 12 .
Introduction -- Background and Literature Review -- Seeing Through Water: Underwater Scene Reconstruction -- Simultaneous Turbulence Mitigation and Moving Object Detection -- Action Recognition by Motion Trajectory Decomposition -- Complex Event Recognition Using Constrained Rank Optimization -- Concluding Remarks -- Extended Derivations for Chapter 4.
Various fundamental applications in computer vision and machine learning require finding the basis of a certain subspace. Examples of such applications include face detection, motion estimation, and activity recognition. An increasing interest has been recently placed on this area as a result of significant advances in the mathematics of matrix rank optimization. Interestingly, robust subspace estimation can be posed as a low-rank optimization problem, which can be solved efficiently using techniques such as the method of Augmented Lagrange Multiplier. In this book, the authors discuss fundamental formulations and extensions for low-rank optimization-based subspace estimation and representation. By minimizing the rank of the matrix containing observations drawn from images, the authors demonstrate how to solve four fundamental computer vision problems, including video denosing, background subtraction, motion estimation, and activity recognition.
9783319041841
10.1007/978-3-319-04184-1 doi
Computer science.
Computer graphics.
Computer Science.
Computer Imaging, Vision, Pattern Recognition and Graphics.
T385 TA1637-1638 TK7882.P3
006.6
Robust Subspace Estimation Using Low-Rank Optimization Theory and Applications / [electronic resource] : by Omar Oreifej, Mubarak Shah. - VI, 114 p. 41 illus., 39 illus. in color. online resource. - The International Series in Video Computing, 12 1571-5205 ; . - The International Series in Video Computing, 12 .
Introduction -- Background and Literature Review -- Seeing Through Water: Underwater Scene Reconstruction -- Simultaneous Turbulence Mitigation and Moving Object Detection -- Action Recognition by Motion Trajectory Decomposition -- Complex Event Recognition Using Constrained Rank Optimization -- Concluding Remarks -- Extended Derivations for Chapter 4.
Various fundamental applications in computer vision and machine learning require finding the basis of a certain subspace. Examples of such applications include face detection, motion estimation, and activity recognition. An increasing interest has been recently placed on this area as a result of significant advances in the mathematics of matrix rank optimization. Interestingly, robust subspace estimation can be posed as a low-rank optimization problem, which can be solved efficiently using techniques such as the method of Augmented Lagrange Multiplier. In this book, the authors discuss fundamental formulations and extensions for low-rank optimization-based subspace estimation and representation. By minimizing the rank of the matrix containing observations drawn from images, the authors demonstrate how to solve four fundamental computer vision problems, including video denosing, background subtraction, motion estimation, and activity recognition.
9783319041841
10.1007/978-3-319-04184-1 doi
Computer science.
Computer graphics.
Computer Science.
Computer Imaging, Vision, Pattern Recognition and Graphics.
T385 TA1637-1638 TK7882.P3
006.6