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Please use this identifier to cite or link to this item: http://hdl.handle.net/10012/6810

Title: Frozen-State Hierarchical Annealing
Authors: Campaigne, Wesley
Keywords: simulated annealing
image synthesis
random fields
Approved Date: 21-Jun-2012
Date Submitted: 2012
Abstract: There is significant interest in the synthesis of discrete-state random fields, particularly those possessing structure over a wide range of scales. However, given a model on some finest, pixellated scale, it is computationally very difficult to synthesize both large and small-scale structures, motivating research into hierarchical methods. This thesis proposes a frozen-state approach to hierarchical modelling, in which simulated annealing is performed on each scale, constrained by the state estimates at the parent scale. The approach leads significant advantages in both modelling flexibility and computational complexity. In particular, a complex structure can be realized with very simple, local, scale-dependent models, and by constraining the domain to be annealed at finer scales to only the uncertain portions of coarser scales, the approach leads to huge improvements in computational complexity. Results are shown for synthesis problems in porous media.
Program: System Design Engineering
Department: Systems Design Engineering
Degree: Master of Applied Science
URI: http://hdl.handle.net/10012/6810
Appears in Collections:Faculty of Engineering Theses and Dissertations
Electronic Theses and Dissertations (UW)

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