- L. H. Croft and J. A. Robinson, “Subband image coding using watershed and watercourse lines of the wavelet transform,” IEEE Trans. Image Process., vol. 3, no. 6, pp. 759–772, Nov. 1994.
- B. Wu and C. Lin, “Memory-efficient architecture for JPEG 2000 coprocessor with large tile image,” IEEE Trans. Circuits Syst. II, ExpBriefs, vol. 53, no. 4, pp. 304–308, Apr. 2006.
- Y. Li and M. Bayoumi, “VLSI architectures for JPEG 2000 EBCOT,” in Proc. 14th Asilomar Conf. Signals, Syst. Comput., Oct.-Nov. 2006,pp. 907–911.
- L. Liu, N. Chen, H. Meng, L. Zhang, Z. Wang, and H. Chen, “A VLSI architecture of JPEG2000 encoder,” IEEE J. Solid-State Circuits, vol. 39, no. 11, pp. 2032–2040, Nov. 2004.
- S. Matsubara and H. Hikawa, “Hardware friendly vector quantization algorithm,” in Proc. IEEE Int. Symp. Circuits Syst., May 2005, vol. 4, pp. 3623–3626.
- H. Eeckhaut, H. Devos, B. Schrauwen, M. Christiaens, and D. Stroobandt, “A hardware-friendly wavelet entropy codec for scalable video,” in Proc. IEEE Design, Autom. Test Eur., 2005, vol. 3, pp. 14–19.
- A. K. Gupta, D. Taubman, and S. Nooshabadi, “Near-optimal low-cost distortion estimation technique for JPEG2000 encoder,” in Proc. IEEE Int. Conf. Acoust., Speech Signal, May 2006, vol. 3, pp. III-14–III-19.
- L. Liu, H. Meng, and M. Zhang, “An ASIC implementation of liftingbased 2-D discretewavelet transform,” in Proc. IEEE Asia Pacific Conf. Circuits Syst., Dec. 2006, pp. 271–274.
- G. Iddan, G. Meron, A. Glukhovsky, and P. Swain, “Wireless capsule endoscopy,” Nature, vol. 405, pp. 417–418, May 2000.
- M. Tubaishat and S. Madria, “Sensor networks: An overview,” Potentials, vol. 22, no. 2, pp. 20–23, Apr./May 2003.
- B. S. Carlson, “Comparison of modern CCD and CMOS image sensor technologies and systems for low resolution imaging,” in IEEE Proc. Sens., Jun. 2002, vol. 1, pp. 171–176.
- A. Theuwissen, “CMOS image sensors: State-of-the-art and future perspectives,” in Proc. 37th Eur. Solid State Device Res. Conf., Sep. 2007, pp. 21–27.
- S. Kleinfelder, S. Lim, X. Liu, and A. El Gamal, “A 10000 frames/s CMOS digital pixel sensor,” IEEE J. Solid-State Circuits, vol. 36, no. 12, pp. 2049–2059, Dec. 2001.
- A. El Gamal, D. Yang, and B. Fowler, “Pixel level processing— Why,what and how?,” in Proc. SPIE, Jan. 1999, vol. 3650, pp. 2–13.
- A. El Gamal, D. Yang, and B. Fowler, “Pixel-level processing: Why, what, and how?,” in Proc. SPIE, Sens., Cameras, Appl. Digital Photography, Mar. 1999, vol. 3650, pp. 2–13.
- D. Renshaw, P. B. Denyer, G. Wang, and M. Lu, “ASIC image sensors,” in Proc. IEEE Int. Symp. Circuits Syst., May 1990, vol. 4, pp. 3038– 3041.
- X. D. Wu, R. A. Street, R. Weisfield, S. Ready, and S. Nelson, “Pagesizeda-Si:H 2-dimensional array as imaging devices,” in Proc. 4th Int. Conf. Solid-State Integr. Circuit Technol., Oct. 1995, pp. 724–726.
- P. J. W. Noble, “Self-scanned silicon image detector arrays,” IEEE Trans. Electron Devices, vol. ED-15, pp. 202–209, Apr. 1968.
- E. R. Fossum, “Active pixel sensors: Are CCD’s dinosaurs?,” Int. Soc. Opt. Eng., vol. 1900, pp. 2–14, Jul. 1993.
- F. Andoh, H. Shimamoto, and Y. Fujita, “A digital pixel image sensor for real-time readout,” IEEE Trans. Electron Devices, vol. 47, no. 11, pp. 2123–2127, Nov. 2000.
- S. Chen, A. Bermak, Y. Wang, and D. Martinez, “Adaptive-quantization digital image sensor for low-power image compression,” IEEE Trans. Circuits Syst. I, Reg. Papers, vol. 54, no. 1, pp. 13–25, Jan. 2007.
- C. Lai, Y. King, and S. Huang, “A 1.2-V 0.25-..mclock output pixel architecture with wide dynamic range and self-offset cancellation,” IEEE Sensors J., vol. 6, no. 2, pp. 398–405, Apr. 2006.
- B. Mansoorian, H. Yee, S. Huang, and E. Fossum, “A 250 mW, 60 frames/s 1280..720 pixel 9 b CMOS digital image sensor,” in Proc. IEEE Int. Solid-State Circuits Conf., Feb. 1999, pp. 312–313.
- Q. Luo, Z. J. Chen, J. G. Harris, S. Clynes, and Erwin, “Adaptive relative and absolute address coding CMOS imager technique and system architecture,” U.S. Patent 7071982B2, Jul. 2006.
- V. Vorperian, “Simplified analysis ofPWM converters using the model of thePWMswitch. Part I: Continuous conduction mode,” IEEE Trans. Aerosp. Electron. Syst., vol. 26, no. 5, pp. 490–496, May 1990.
- A. Bermak, “ACMOS imager with PFM/PWM based analog-to-digital converter,” in Proc. IEEE Int. Symp. Circuits Sys.,May 2002, vol. 4, pp. IV-53–IV-56.
- M. Zhang and A. Bermak, “A low power CMOS image sensor design for wireless endoscopy capsule,” in Proc. IEEE Biomed. Circuit Syst.Conf., Nov. , 2007, pp. 2355–2358.
- Milin Zhang and Amine Bermak,”Compressive Acquisition CMOS Image Sensor: From the Algorithm to Hardware Implementation”, VOL. 18, pages 490-500 NO.3, MARCH 2010.
- P.E. Allen and D.R. Holberg, “CMOS Analog Circuit Design – 2nd Ed”, Oxford University Press, 2002.
- B. Razavi, “Design of Analog CMOS Integrated Circuits”, McGraw-Hill, Inc., 2001.
- Sun, J.Z.; Goyal, V.K.; “Scalar Quantization for Relative Error” pp. 293-302, Apr 2011.
- http://www.cis.rit.edu/class/simg712-90/notes/14-Quantization.pdf
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