Title :
Parallel Numerical Simulation of Visual Neurons for Analysis of Optical Illusion
Author :
Egashira, A. ; Satoh, S. ; Irie, Hidetsugu ; Yoshinaga, Tsunehiro
Author_Institution :
Grad. Sch. of Inf. Syst., Univ. of Electro-Commun., Chofu, Japan
Abstract :
Detailed mechanism of optical illusion caused by visual neurons in human brain has not been well understood, and its numerical simulation is helpful to analyze visual system of humans. This paper describes implementation techniques of parallel numerical simulation to help understanding optical illusion by using a GPU-accelerated PC cluster. Our parallel acceleration techniques include following three points. Firstly, input images of the numerical simulation is efficiently calculated by dividing it images for multiple computation nodes using MPI (Message Passing Interface). Secondly, convolution, which is dominated computation for the optical flow, is accelerated by GPU. Finally, an algorithm to compute convolution specified to analyze optical illusion is proposed to speed up the simulation. Our experimental results show an interesting insight that values of optical flow for images causing optical illusion are quite different compared to that does not cause the optical illusion. We also demonstrate that our implementation of simulation works efficiently on the GPU-accelerated PC cluster.
Keywords :
biology computing; convolution; graphics processing units; message passing; numerical analysis; parallel processing; physiological models; visual perception; GPU-accelerated PC cluster; MPI; convolution; human brain; message passing interface; optical flow; optical illusion analysis; parallel acceleration; parallel numerical simulation; visual neurons; Computational modeling; Convolution; Humans; Kernel; Mathematical model; Optical imaging; Visualization; CUDA; Convolution; GPU; MPI; Numerical simulation; Parallel computing; Visual neural system;
Conference_Titel :
Networking and Computing (ICNC), 2012 Third International Conference on
Conference_Location :
Okinawa
Print_ISBN :
978-1-4673-4624-5
DOI :
10.1109/ICNC.2012.27