Multi-View Human Body Pose Estimation with CUDA-PSO

Author:

Mussi Luca1,Ivekovic Spela2,Nashed Youssef S.G.3,Cagnoni Stefano3

Affiliation:

1. Henesis s.r.l., Parma, Italy

2. Department of Mechanical & Aerospace Engineering, University of Strathclyde, Glasgow, UK

3. Department of Information Engineering, University of Parma, Parma, Italy

Abstract

The authors formulate the body pose estimation as a multi-dimensional nonlinear optimization problem, suitable to be approximately solved by a meta-heuristic, specifically, the particle swarm optimization (PSO). Starting from multi-view video sequences acquired in a studio environment, a full skeletal configuration of the human body is retrieved. They use a generic subdivision-surface body model in 3-D to generate solutions for the optimization problem. PSO then looks for the best match between the silhouettes generated by the projection of the model in a candidate pose and the silhouettes extracted from the original video sequence. The optimization method, in this case PSO, is run in parallel on the Graphics Processing Unit (GPU) and is implemented in Cuda-C™ on the nVidia CUDA™ architecture. The authors compare the results obtained by different configurations of the camera setup, fitness function, and PSO neighborhood topologies.

Publisher

IGI Global

Subject

General Engineering

Reference28 articles.

1. Balan, A. O., Sigal, L., & Black, M. J. (2005), A quantitative evaluation of video-based 3-D person tracking. In Proceedings of the 14th International Conference on Computer Communications and Networks (pp. 349-356).

2. Bandouch, J., Engstler, F., & Beetz, M. (2008). Evaluation of hierarchical sampling strategies in 3D human pose estimation. In Proceedings of the British Machine Vision Conference.

3. Real-time 3-D human body tracking using learnt models of behaviour

4. A parallel particle swarm optimization algorithm with communication strategies.;J.-F.Chang;Journal of Information Science and Engineering,2005

5. Articulated Body Motion Capture by Stochastic Search

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