DocumentCode :
607803
Title :
GPU-based infrared sensor model capable of operating in real time
Author :
Tokay, Mehmet Serkan ; Figen, Z.G.
Author_Institution :
TuBITAK BILGEM ILTAREN, Ankara, Turkey
fYear :
2013
fDate :
24-26 April 2013
Firstpage :
1
Lastpage :
4
Abstract :
This work describes a Graphic Processing Unit (GPU) based Infrared (IR) Sensor Model Software capable of operating in real time which has been recently developed by us. This module, which is based on physical models, is capable of simulating the images registered by an infrared imager. The software is also capable of accounting for the image degradations (blur and noise) by applying these effects on synthetic images generated by an IR Scene Generator Software at high frame rates. In this module, in order to enable processing of large format images at high frame rates, the parallel computations are carried out on the GPU. In this work, we achieved a performance increase when compared to the results of an earlier and similar work presented by us. In order to decrease the execution time, some routines (especially those pertaining to between GPU with CPU data transfer) have been improved. In order to determine the runtime performance of the module, the module has been run in a closed loop where IR Scene Generator and Target Detection / Tracking Modules also exist and maximum achievable frame rates corresponding to different image sizes have been recorded. We believe this study will support the efforts for developing closedloop simulation systems employing the method of signal injection.
Keywords :
graphics processing units; image registration; infrared detectors; infrared imaging; object detection; target tracking; GPU-based infrared sensor model; IR scene generator software; IR sensor model software; closed-loop simulation systems; frame rates; graphic processing unit; high frame rates; image registration; infrared imager; large format image processing; synthetic images; target detection; tracking modules; Atmospheric modeling; Central Processing Unit; Graphics processing units; Imaging; Noise; Real-time systems; Atmospheric MTF; Closed-loop simulation; Graphical Processing Unit (GPU); Infrared Scene Generation; Infrared Sensor Model; Modulation Transfer Function (MTF); Optical Turbulence; Signal injection; Target Detection;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing and Communications Applications Conference (SIU), 2013 21st
Conference_Location :
Haspolat
Print_ISBN :
978-1-4673-5562-9
Electronic_ISBN :
978-1-4673-5561-2
Type :
conf
DOI :
10.1109/SIU.2013.6531464
Filename :
6531464
Link To Document :
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