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Papers/E(n) Equivariant Graph Neural Networks

E(n) Equivariant Graph Neural Networks

Victor Garcia Satorras, Emiel Hoogeboom, Max Welling

2021-02-19Representation LearningGraph Property Prediction
PaperPDFCodeCode(official)CodeCodeCode

Abstract

This paper introduces a new model to learn graph neural networks equivariant to rotations, translations, reflections and permutations called E(n)-Equivariant Graph Neural Networks (EGNNs). In contrast with existing methods, our work does not require computationally expensive higher-order representations in intermediate layers while it still achieves competitive or better performance. In addition, whereas existing methods are limited to equivariance on 3 dimensional spaces, our model is easily scaled to higher-dimensional spaces. We demonstrate the effectiveness of our method on dynamical systems modelling, representation learning in graph autoencoders and predicting molecular properties.

Results

TaskDatasetMetricValueModel
Graph Property PredictionQM9Standardized MAE1.23EGNN
Graph Property PredictionQM9alpha (ma)71EGNN
Graph Property PredictionQM9gap (meV)48EGNN
Graph Property PredictionQM9logMAE-5.43EGNN

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