NeurIPS 2019poster35 citations

DFNets: Spectral CNNs for Graphs with Feedback-Looped Filters

W. O. K. Asiri Suranga Wijesinghe, Qing Wang

Abstract

We propose a novel spectral convolutional neural network (CNN) model on graph structured data, namely Distributed Feedback-Looped Networks (DFNets). This model is incorporated with a robust class of spectral graph filters, called feedback-looped filters, to provide better localization on vertices, while still attaining fast convergence and linear memory requirements. Theoretically, feedback-looped filters can guarantee convergence w.r.t. a specified error bound, and be applied universally to any graph without knowing its structure. Furthermore, the propagation rule of this model can diversify features from the preceding layers to produce strong gradient flows. We have evaluated our model using two benchmark tasks: semi-supervised document classification on citation networks and semi-supervised entity classification on a knowledge graph. The experimental results show that our model considerably outperforms the state-of-the-art methods in both benchmark tasks over all datasets.

BibTeX
@inproceedings{NEURIPS2019_f8752278,
 author = {Wijesinghe, W. O. K. Asiri Suranga and Wang, Qing},
 booktitle = {Advances in Neural Information Processing Systems},
 editor = {H. Wallach and H. Larochelle and A. Beygelzimer and F. d\textquotesingle Alch\'{e}-Buc and E. Fox and R. Garnett},
 pages = {},
 publisher = {Curran Associates, Inc.},
 title = {DFNets: Spectral CNNs for Graphs with Feedback-Looped Filters},
 url = {https://proceedings.neurips.cc/paper_files/paper/2019/file/f87522788a2be2d171666752f97ddebb-Paper.pdf},
 volume = {32},
 year = {2019}
}
DFNets: Spectral CNNs for Graphs with Feedback-Looped Filters · NeurIPS 2019