DocumentCode
3672308
Title
FPA-CS: Focal plane array-based compressive imaging in short-wave infrared
Author
Huaijin Chen;M. Salman Asif;Aswin C. Sankaranarayanan;Ashok Veeraraghavan
Author_Institution
ECE Department, Rice University, Houston, TX, USA
fYear
2015
fDate
6/1/2015 12:00:00 AM
Firstpage
2358
Lastpage
2366
Abstract
Cameras for imaging in short and mid-wave infrared spectra are significantly more expensive than their counterparts in visible imaging. As a result, high-resolution imaging in those spectrum remains beyond the reach of most consumers. Over the last decade, compressive sensing (CS) has emerged as a potential means to realize inexpensive short-wave infrared cameras. One approach for doing this is the single-pixel camera (SPC) where a single detector acquires coded measurements of a high-resolution image. A computational reconstruction algorithm is then used to recover the image from these coded measurements. Unfortunately, the measurement rate of a SPC is insufficient to enable imaging at high spatial and temporal resolutions. We present a focal plane array-based compressive sensing (FPA-CS) architecture that achieves high spatial and temporal resolutions. The idea is to use an array of SPCs that sense in parallel to increase the measurement rate, and consequently, the achievable spatio-temporal resolution of the camera. We develop a proof-of-concept prototype in the short-wave infrared using a sensor with 64× 64 pixels; the prototype provides a 4096× increase in the measurement rate compared to the SPC and achieves a megapixel resolution at video rate using CS techniques.
Keywords
"Cameras","Spatial resolution","Image reconstruction","Lenses","Arrays"
Publisher
ieee
Conference_Titel
Computer Vision and Pattern Recognition (CVPR), 2015 IEEE Conference on
Electronic_ISBN
1063-6919
Type
conf
DOI
10.1109/CVPR.2015.7298849
Filename
7298849
Link To Document