Asian Journal of Information Technology

Year: 2014
Volume: 13
Issue: 5
Page No. 291 - 299

An Area Efficient Weighting Coefficient Generation Architecture for Polynomial Convolution Interpolation

Authors : C. John Moses and D. Selvathi

References

Chen, S.L., 2013. VLSI implementation of a low-cost high-quality image scaling processor. IEEE Trans. Circ. Syst.: Express Briefs, 60: 31-35.

Chen, S.L., 2013. VLSI implementation of an adaptive edge-enhanced image scalar for real-time multimedia applications. IEEE Trans. Circ. Syst. Video Technol., 23: 1510-1522.
CrossRef  |  

Chen, S.L., H.Y. Huang and C.H. Luo, 2011. A low-cost high-quality adaptive scalar for real-time multimedia applications. IEEE Trans. Circ. Syst. Video Technol., 21: 1600-1611.
CrossRef  |  

Fry, J. and M. Pusateri, 2009. A comparison of bicubic and biquintic interpolators suitable for real-time hardware implementation. Proceedings of the Applied Imagery Pattern Recognition Workshop, October 14-16, 2009, Washington, DC., USA., pp: 1-5.

Hwang, J.W. and H.S. Lee, 2004. Adaptive image interpolation based on local gradient features. IEEE Signal Process. Lett., 11: 359-362.
CrossRef  |  

Kim, C.H., S.M. Seong, J.A. Lee and L.S. Kim, 2003. Winscale: An image-scaling algorithm using an area pixel model. IEEE Trans. Circ. Syst. Video Technol., 13: 549-553.
CrossRef  |  

Lin, C.C., M.H. Sheu, C. Liaw and H.K. Chiang, 2010. Fast first-order polynomials convolution interpolation for real-time digital image reconstruction. IEEE Trans. Circ. Syst. Video Technol., 20: 1260-1264.
CrossRef  |  

Lin, C.C., M.H. Sheu, H.K. Chiang, C. Liaw and Z.C. Wu, 2008. The efficient VLSI design of BI-CUBIC convolution interpolation for digital image processing. Proceedings of the IEEE International Symposium on Circuits and Systems, May 18-21, 2008, Seattle, WA., USA., pp: 480-483.

Lin, C.C., M.H. Sheu, H.K. Chiang, W.K. Tsai and Z.C. Wu, 2008. Real-time FPGA architecture of extended linear convolution for digital image scaling. Proceedings of the International Conference on ICECE Technology, December 8-10, 2008, Taipei, Taiwan, pp: 381-384.

Lin, C.C., M.H. Sheu, H.K. Chiang, Z.C. Wu, J.Y. Tu and C.H. Chen, 2008. A low-cost VLSI design of extended linear interpolation for real time digital image processing. Proceedings of the International Conference on Embedded Software and Systems, July 29-31, 2008, Sichuan, China, pp: 196-202.

Lin, C.C., Z.C. Wu, W.K. Tsai, M.H. Sheu and H.K. Chiang, 2007. The VLSI design of winscale for digital image scaling. Proceedings of the 3rd International Conference on Intelligent Information Hiding and Multimedia Signal Processing, Volume 2, November 26-28, 2007, Kaohsiung, Taiwan, pp: 511-514.

Madani, R., A. Ayremlou, A. Amini and F. Marvasti, 2012. Optimized compact-support interpolation kernels. IEEE Trans. Signal Process., 60: 626-633.
CrossRef  |  

Meijering, E.H. and M. Unser, 2003. A note on cubic convolution interpolation. IEEE Trans. Image Process., 12: 477-479.
CrossRef  |  

Meijering, E.H., K.J. Zuiderveld and M.A. Viergever, 1999. Image reconstruction by convolution with symmetrical piecewise nth-order polynomial kernels. IEEE Trans. Image Process., 8: 192-201.
CrossRef  |  

Miklos, P., 2007. Comparison of convolutional based interpolation techniques in digital image processing. Proceedings of the 5th International Symposium on Intelligent Systems and Informatics, August 24-25, 2007, Subotica, Serbia, pp: 87-90.

Moses, C.J., D. Selvathi and S.S. Rani, 2010. FPGA implementation of an efficient partial volume interpolation for medical image registration. Proceedings of the IEEE International Conference on Communication Control and Computing Technologies, October 7-9, 2010, Ramanathapuram, India, pp: 132-137.

Moses, C.J., D. Selvathi, J.P. Beena and S.S. Rani, 2011. FPGA accelerated partial volume interpolation. Proceedings of the International Conference on Emerging Trends in Electrical and Computer Technology, March 23-24, 2011, Tamil Nadu, India, pp: 816-819.

Nuno-Maganda, M.A. and M.O. Arias-Estrada, 2005. Real-time FPGA-based architecture for bicubic interpolation: An application for digital image scaling. Proceedings of the International Conference on Reconfigurable Computing and FPGAs, September 28-30, 2005, Puebla, Mexico, pp: 1-8.

Shezaf, N., H. Abramov-Segal, I. Sutskover and R. Bar-Sella, 2000. Adaptive low complexity algorithm for image zooming at fractional scaling ratio. Proceedings of the 21st IEEE Convention of the Electrical and Electronic Engineers in Israel, April 11-12, 2000, Tel-Aviv, Israel, pp: 253-256.

Tsai, C.S., H.H. Liu and M.C. Tsai, 2011. Design of a scan converter using the cubic convolution interpolation with Canny edge detection. Proceedings of the International Conference on Electric Information and Control Engineering, April 15-17, 2011, Wuhan, China, pp: 5813-5816.

Xiao, J., X. Zou, Z. Liu and X. Guo, 2006. Adaptive interpolation algorithm for real-time image resizing. Proceedings of the 1st International Conference on Innovative Computing, Information and Control, Volume 2, August 30-September 1, 2006, Beijing, China, pp: 221-224.

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