DocumentCode :
257854
Title :
On adaptive pixel random selection for compressive sensing
Author :
Guicquero, W. ; Vandergheynst, P. ; Laforest, T. ; Dupret, A.
Author_Institution :
STI-IEL LTS2, Swiss Inst. of Technol. Lausanne, Lausanne, Switzerland
fYear :
2014
fDate :
3-5 Dec. 2014
Firstpage :
712
Lastpage :
716
Abstract :
Recently developed Compressive Sensing image sensor architectures tend to provide compact on-chip implementations to perform alternative acquisitions. On the other hand, the time of reconstruction generally limits possible applications taking advantage of those specific sensing schemes. This work proposes an entire Compressive Sensing system composed of an encoder (a dedicated imager top-level architecture) and a decoder (a reconstruction algorithm). The proposed system provides a compromise between the sensing scheme efficiency for relaxing on-chip constraints and the reconstruction complexity/quality. This system performs an adaptive block-based sensing, particularly well suited for video acquisition because of being combined with a fast inpainting based reconstruction algorithm. The simulation results show that compared to state of the art reconstructions and without important image degradation, the proposed reconstruction algorithm considerably reduces the computation time.
Keywords :
compressed sensing; image reconstruction; image sensors; adaptive block-based sensing; adaptive pixel random selection; compressive sensing; decoder; encoder; image degradation; image sensor architecture; imager top-level architecture; inpainting based reconstruction algorithm; on-chip constraints; reconstruction algorithm; reconstruction complexity; reconstruction quality; video acquisition; Complexity theory; Compressed sensing; Image coding; Image reconstruction; PSNR; Sensors; Signal processing algorithms; Compressive Sensing; Image Sensor; Inpainting;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal and Information Processing (GlobalSIP), 2014 IEEE Global Conference on
Conference_Location :
Atlanta, GA
Type :
conf
DOI :
10.1109/GlobalSIP.2014.7032211
Filename :
7032211
Link To Document :
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