Dual Imager Core Chip with 24.8 Rangemaps/s 3-D and 58 fps 2-D Simultaneous Capture Capability
Author:
Affiliation:
1. Faculty of Engineering, and VLSI Design and Education Center (VDEC), The University of Tokyo
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
http://www.jstage.jst.go.jp/article/transele/E92.C/6/E92.C_6_798/_pdf
Reference15 articles.
1. [1] J. Choi, S.-W. Han, S.-J. Kim, S.-I. Chang, and E. Yoon, “A spatial-temporal multi-resolution CMOS image sensor with adaptive frame rates for moving objects in the region-of-interest, ” IEEE International Solid-State Circuits Conf. (ISSCC) ISSCC Dig. of Tech. Papers, pp.502-503, 2008.
2. [2] G. Luo and X. Yang, “Fast stereo matching algorithm using adaptive window, ” Information Processing (ISIP), 2008 International Symp., pp.25-30, May 2008.
3. [3] R.M. Philipp and R. Etienne-Cummings, “A 128 × 128 33mW 30frames/s single chip stereo imager, ” IEEE International Solid-State Circuit Conf. (ISSCC) Dig. Of Tech. Papers, pp.2050-2059, 2006.
4. [4] S.K. Gehrig and U. Franke, “Improving stereo sub-pixel accuracy for long range stereo, ” Proc. International Conf. on Computer Vision (ICCV) pp.1-7, 2008.
5. [5] P. Merrell, A. Akbarzadeh, W. Liang, P. Mordohai, J.-M. Frahm, Y. Ruigang, D. Nister, and M. Pollefeys, “Real-time visibillity-based fusion of depth maps, ” Proc. International Conf. on Computer Vision (ICCV), pp.1-8, 2007.
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