Parallel processing architectures for iterative image restoration. Katsaggelos, A., Kumar, S., & Sarrafzadeh, M. In International Conference on Acoustics, Speech, and Signal Processing, volume 4, pages 2544–2547, 1989. IEEE.
Parallel processing architectures for iterative image restoration [link]Paper  doi  abstract   bibtex   
Mesh and mesh-of-pyramids implementations of iterative image restoration algorithms are proposed. These implementations are based on a single-step algorithm as well as on a multistep iterative algorithm derived from the single step regularized iterative restoration algorithm. One processor is assigned to each picture element, with local memory depending on the support of the restoration filter. The implementations consist of interprocessor communication and intraprocessor computations. The efficiency of the proposed VLSI algorithms is judged by establishing lower bounds on AT2 , where A is the area of the VLSI and T is its computation time.
@inproceedings{Aggelos1989,
abstract = {Mesh and mesh-of-pyramids implementations of iterative image restoration algorithms are proposed. These implementations are based on a single-step algorithm as well as on a multistep iterative algorithm derived from the single step regularized iterative restoration algorithm. One processor is assigned to each picture element, with local memory depending on the support of the restoration filter. The implementations consist of interprocessor communication and intraprocessor computations. The efficiency of the proposed VLSI algorithms is judged by establishing lower bounds on AT2 , where A is the area of the VLSI and T is its computation time.},
author = {Katsaggelos, A.K. and Kumar, S.P.R. and Sarrafzadeh, M.},
booktitle = {International Conference on Acoustics, Speech, and Signal Processing},
doi = {10.1109/ICASSP.1989.266986},
issn = {07367791},
pages = {2544--2547},
publisher = {IEEE},
title = {{Parallel processing architectures for iterative image restoration}},
url = {http://ieeexplore.ieee.org/document/266986/},
volume = {4},
year = {1989}
}

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