Theoretic derivation of directed acyclic subgraph algorithm and comparisons with message passing algorithm
JOURNAL OF ELECTRONIC IMAGING(2016)
摘要
This study investigates the directed acyclic subgraph (DAS) algorithm, which is used to solve discrete labeling problems much more rapidly than other Markov-random-field-based inference methods but at a competitive accuracy. However, the mechanism by which the DAS algorithm simultaneously achieves competitive accuracy and fast execution speed, has not been elucidated by a theoretical derivation. We analyze the DAS algorithm by comparing it with a message passing algorithm. Graphical models, inference methods, and energy-minimization frameworks are compared between DAS and message passing algorithms. Moreover, the performances of DAS and other message passing methods [sum-product belief propagation (BP), max-product BP, and tree-reweighted message passing] are experimentally compared. (C) 2016 SPIE and IS&T
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关键词
Markov random field,discrete labeling problem,graphical model,raster-scanning method
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