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Encoding Robust Representation for Graph Generation

2018-09-28Code Available0· sign in to hype

Dongmian Zou, Gilad Lerman

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Abstract

Generative networks have made it possible to generate meaningful signals such as images and texts from simple noise. Recently, generative methods based on GAN and VAE were developed for graphs and graph signals. However, the mathematical properties of these methods are unclear, and training good generative models is difficult. This work proposes a graph generation model that uses a recent adaptation of Mallat's scattering transform to graphs. The proposed model is naturally composed of an encoder and a decoder. The encoder is a Gaussianized graph scattering transform, which is robust to signal and graph manipulation. The decoder is a simple fully connected network that is adapted to specific tasks, such as link prediction, signal generation on graphs and full graph and signal generation. The training of our proposed system is efficient since it is only applied to the decoder and the hardware requirements are moderate. Numerical results demonstrate state-of-the-art performance of the proposed system for both link prediction and graph and signal generation.

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Benchmark Results

DatasetModelMetricClaimedVerifiedStatus
Citeseer (biased evaluation)SCAT (half of negative examples with 0 features)AP97.57Unverified
Cora (biased evaluation)SCAT (half of negative examples with 0 features)AP94.63Unverified
Pubmed (biased evaluation)SCAT (half of negative examples with 0 features)AP97.19Unverified

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