Some computer vision tasks become easier with known camera calibration. We propose a method for camera focal length, location and orientation estimation by observing human poses in the scene. Weak requirements to the observed scene make the method applicable to a wide range of scenarios. Our evaluation shows that even being trained only on synthetic dataset, the proposed method outperforms known solution. Our experiments show that using only human poses as the input also allows the proposed method to calibrate dynamic visual sensors
In this paper, we propose a novel extrinsic calibration method for camera networks by analyzing trac...
Thesis (Ph.D.)--University of Washington, 2019In this dissertation, a framework for 3D scene reconst...
This thesis describes camera based methods for determining positions and orientations of objects in ...
Multi-pedestrian tracking in camera networks has gained enormous interest in the industry because of...
This thesis deals with estimating position and orientation in real-time, using measurements from vis...
The analysis and understanding of human movement is central to many applications such as sports scie...
Accurate extrinsic calibration of wide baseline multi-camera systems enables better understanding of...
We present a fully automatic camera calibration algorithm for monocular stationary surveillance came...
peer reviewedIn this paper, we present a two-step methodology to improve existing human pose estimat...
Extrinsic camera calibration is essential for any computer vision task in a camera network. Typicall...
Abstract—We propose a novel approach for the estimation of the pose and focal length of a camera fro...
This dissertation introduces new techniques that increase the accuracy of camera-based pose estimati...
Extrinsic camera calibration is essential for any computer vision tasks in a camera network. Usually...
Markerless pose estimation systems are useful for various applications including human- computer in...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] The task of human pose estima...
In this paper, we propose a novel extrinsic calibration method for camera networks by analyzing trac...
Thesis (Ph.D.)--University of Washington, 2019In this dissertation, a framework for 3D scene reconst...
This thesis describes camera based methods for determining positions and orientations of objects in ...
Multi-pedestrian tracking in camera networks has gained enormous interest in the industry because of...
This thesis deals with estimating position and orientation in real-time, using measurements from vis...
The analysis and understanding of human movement is central to many applications such as sports scie...
Accurate extrinsic calibration of wide baseline multi-camera systems enables better understanding of...
We present a fully automatic camera calibration algorithm for monocular stationary surveillance came...
peer reviewedIn this paper, we present a two-step methodology to improve existing human pose estimat...
Extrinsic camera calibration is essential for any computer vision task in a camera network. Typicall...
Abstract—We propose a novel approach for the estimation of the pose and focal length of a camera fro...
This dissertation introduces new techniques that increase the accuracy of camera-based pose estimati...
Extrinsic camera calibration is essential for any computer vision tasks in a camera network. Usually...
Markerless pose estimation systems are useful for various applications including human- computer in...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] The task of human pose estima...
In this paper, we propose a novel extrinsic calibration method for camera networks by analyzing trac...
Thesis (Ph.D.)--University of Washington, 2019In this dissertation, a framework for 3D scene reconst...
This thesis describes camera based methods for determining positions and orientations of objects in ...