DocumentCode :
257693
Title :
Efficient image reconstruction for gigapixel quantum image sensors
Author :
Chan, Stanley H. ; Lu, Yue M.
Author_Institution :
Sch. of Eng. & Appl. Sci., Harvard Univ., Cambridge, MA, USA
fYear :
2014
fDate :
3-5 Dec. 2014
Firstpage :
312
Lastpage :
316
Abstract :
Recent advances in materials, devices and fabrication technologies have motivated a strong momentum in developing solid-state sensors that can detect individual photons in space and time. It has been envisioned that such sensors can eventually achieve very high spatial resolutions (e.g., 109 pixels/chip) as well as high frame rates (e.g., 106 frames/sec). In this paper, we present an efficient algorithm to reconstruct images from the massive binary bit-streams generated by these sensors. Based on the concept of alternating direction method of multipliers (ADMM), we transform the computationally intensive optimization problem into a sequence of subproblems, each of which has efficient implementations in the form of polyphase-domain filtering or pixel-wise nonlinear mappings. Moreover, we reformulate the original maximum likelihood estimation as maximum a posterior estimation by introducing a total variation prior. Numerical results demonstrate the strong performance of the proposed method, which achieves several dB´s of improvement in PSNR and requires a shorter runtime as compared to standard gradient-based approaches.
Keywords :
image reconstruction; image sensors; maximum likelihood estimation; optimisation; ADMM; alternating direction method of multipliers; gigapixel quantum image sensor; image reconstruction; maximum a posterior estimation; maximum likelihood estimation; optimization problem; Image reconstruction; Image sensors; Maximum likelihood estimation; Photonics; Runtime; Sensors; ADMM; Image reconstruction; gigapixel imaging; quantum image sensors;
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.2014.7032129
Filename :
7032129
Link To Document :
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