DocumentCode :
1123797
Title :
Image Analysis Using Multigrid Relaxation Methods
Author :
Terzopoulos, Demetri
Author_Institution :
M.I.T Artificial Intelligence Laboratory, 545 Technology Square, Cambridge, MA 02139.
Issue :
2
fYear :
1986
fDate :
3/1/1986 12:00:00 AM
Firstpage :
129
Lastpage :
139
Abstract :
Image analysis problems, posed mathematically as variational principles or as partial differential equations, are amenable to numerical solution by relaxation algorithms that are local, iterative, and often parallel. Although they are well suited structurally for implementation on massively parallel, locally interconnected computational architectures, such distributed algorithms are seriously handi capped by an inherent inefficiency at propagating constraints between widely separated processing elements. Hence, they converge extremely slowly when confronted by the large representations of early vision. Application of multigrid methods can overcome this drawback, as we showed in previous work on 3-D surface reconstruction. In this paper, we develop multiresolution iterative algorithms for computing lightness, shape-from-shading, and optical flow, and we examine the efficiency of these algorithms using synthetic image inputs. The multigrid methodology that we describe is broadly applicable in early vision. Notably, it is an appealing strategy to use in conjunction with regularization analysis for the efficient solution of a wide range of ill-posed image analysis problems.
Keywords :
Computer architecture; Concurrent computing; Distributed algorithms; Distributed computing; Image analysis; Iterative algorithms; Optical propagation; Partial differential equations; Relaxation methods; Ultraviolet sources; Image analysis; inverse problems; lightness; multigrid relaxation; multiresolution algorithms; optical flow; parallel algorithms; partial differential equations; shape from shading; variational principles;
fLanguage :
English
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher :
ieee
ISSN :
0162-8828
Type :
jour
DOI :
10.1109/TPAMI.1986.4767767
Filename :
4767767
Link To Document :
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