Abstract
In this work, we propose a deep learning approach for the recursive pattern recognition model, called AR2P (for its acronym in Spanish: "Algoritmo Recursivo de Reconocimiento de Patrones"), by extending its supervised learning capability towards a semi-supervised learning scheme. The deep learning architecture is composed of three phases: The first one, called discovery phase, discovers the atomic descriptors. The second one, called aggregation phase, creates a feature hierarchy (merge of descriptors) from atomic descriptors. Finally, the classification phase carries out the classification of the inputs based on the feature hierarchy. The last phase uses a supervised learning approach, while the first two follow an unsupervised learning approach. In this paper is tested the performance of the proposed model, using a dataset from the UCI Machine Learning Repository.
Cite
CITATION STYLE
Puerto, E., Aguilar, J., Reyes, J., & Sarkar, D. (2018). Deep learning architecture for the recursive patterns recognition model. In Journal of Physics: Conference Series (Vol. 1126). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/1126/1/012035
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