2020
DOI: 10.48550/arxiv.2010.14556
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Classification and image processing with a semi-discrete scheme for fidelity forced Allen--Cahn on graphs

Jeremy Budd,
Yves van Gennip,
Jonas Latz

Abstract: This paper introduces a semi-discrete implicit Euler (SDIE) scheme for the Allen-Cahn equation (ACE) with fidelity forcing on graphs. Bertozzi and Flenner (2012) pioneered the use of this differential equation as a method for graph classification problems, such as semi-supervised learning and image segmentation. In Merkurjev, Kostić, and Bertozzi (2013), a Merriman-Bence-Osher (MBO) scheme with fidelity forcing was used instead, as the MBO scheme is heuristically similar to the ACE. This paper rigorously estab… Show more

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“…Details of the definition of the potential and the fidelity term incorporating the training data are found in [29]. Further extensions of this approach have been suggested in [41,13,7,15,16,18,10].…”
Section: Semi-supervised Learning With Phase Field Methods: Allen-cah...mentioning
confidence: 99%
“…Details of the definition of the potential and the fidelity term incorporating the training data are found in [29]. Further extensions of this approach have been suggested in [41,13,7,15,16,18,10].…”
Section: Semi-supervised Learning With Phase Field Methods: Allen-cah...mentioning
confidence: 99%