An integrated graph data privacy attack framework based on graph neural networks in IoT

Author:

Zhao Xiaoran1,Peng Changgen1ORCID,Ding Hongfa12,Tan Weijie13

Affiliation:

1. State Key Laboratory of Public Big Data, College of Computer Science and Technology Guizhou University Guiyang People's Republic of China

2. Information School Guizhou University of Finance and Economics Guiyang People's Republic of China

3. Key Laboratory of Advanced Manufacturing Technology Ministry of Education, Guizhou University Guiyang People's Republic of China

Abstract

SummaryKnowledge graphs contain a large amount of entity and relational data, and graph neural networks, as a class of efficient graph representation techniques based on deep learning, excel in knowledge graph modeling. However, previous neural network architectures for the most part only learn node representations and do not fully consider the heterogeneity of data. In this article, we innovatively propose a privacy attack framework based on IoT, PAFI, which is able to classify entities and relations, learn embedding representations in multi‐relational graphs, and can be applied to some existing neural network algorithms. Based on this, a fine‐grained privacy attack model, FPM, is proposed, which can perform attack operations on multiple targets, achieve selectivity of target tasks, and greatly improve the generalization ability of the attack model. In this article, the effectiveness of PAFI and FPM is demonstrated by real network datasets, and compared with previous attack methods, both of which achieve good results.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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