MFAS: Multimodal Fusion Architecture Search
Juan-Manuel Perez-Rua, Valentin Vielzeuf, Stephane Pateux, Moez Baccouche, Frederic Jurie
Abstract
We tackle the problem of finding good architectures for multimodal classification problems. We propose a novel and generic search space that spans a large number of possible fusion architectures. In order to find an optimal architecture for a given dataset in the proposed search space, we leverage an efficient sequential model-based exploration approach that is tailored for the problem. We demonstrate the value of posing multimodal fusion as a neural architecture search problem by extensive experimentation on a toy dataset and two other real multimodal datasets. We discover fusion architectures that exhibit state-of-the-art performance for problems with different domain and dataset size, including the \ntu dataset, the largest multimodal action recognition dataset available.
BibTeX
@inproceedings{cvpr2019_mfasmultimodalfu,
title = {MFAS: Multimodal Fusion Architecture Search},
author = {Juan-Manuel Perez-Rua and Valentin Vielzeuf and Stephane Pateux and Moez Baccouche and Frederic Jurie},
booktitle = {CVPR 2019},
year = {2019}
}