在公共属性图上进行高效且保护隐私的聚合查询

IF 7.5 3区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS
Yunguo Guan;Rongxing Lu;Songnian Zhang;Yandong Zheng;Jun Shao;Guiyi Wei
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引用次数: 0

摘要

近年来,图数据结构表示顶点关系的能力使其越来越受欢迎。在这种趋势下,人们收集并公开了许多属性图数据集,以方便各种查询,如本文将广泛使用的聚合查询。虽然数据集和查询服务的云部署都很吸引人,但它可能会引发与用户查询和结果相关的隐私问题。在过去几年中,已经有许多关于图隐私的研究成果问世,但它们要么没有考虑查询隐私问题,要么无法适用于聚合查询。还有一些著作考虑了对加密图的查询,但无法保护访问模式隐私。特别是,当部署它们来处理对公共图数据集的查询时,云服务器可以推断出与用户查询相关的其他信息。针对这一挑战,我们在本文中提出了一种保护隐私的属性图聚合查询方案。具体来说,我们首先设计了新的隐私保护顶点匹配和匹配更新技术,分别安全地初始化和更新数据集中的顶点与用户指定模式之间的映射。在此基础上,我们提出了实现公共属性图聚合查询的方案。严格的安全性分析表明,我们提出的方案既能保护用户查询和结果的隐私,又能实现访问模式的隐私保护。此外,大量实验还证明了我们的方案在计算开销方面的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient and Privacy-Preserving Aggregate Query Over Public Property Graphs
Graph data structures’ ability of representing vertex relationships has made them increasingly popular in recent years. Amid this trend, many property graph datasets have been collected and made public to facilitate a variant of queries such as the aggregate queries that will be extensively exploited in this paper. While cloud deployment of both the datasets and query services is intriguing, it could raise privacy concerns related to user queries and results. In past years, many works on graph privacy have been put forth, however they either do not consider query privacy or cannot be adapted for aggregate queries. Some others consider queries over encrypted graphs but cannot protect access pattern privacy. In particular, when deploying them to handle queries over public graph datasets, the cloud server can infer additional information related to user queries. Aiming at this challenge, we propose a privacy-preserving property graph aggregate query scheme in this paper. Specifically, we first design new privacy-preserving vertex matching and matching update techniques, which securely initialize and update the mapping between vertices in the dataset and the user-specified patterns, respectively. Based on them, we construct our proposed scheme to achieve aggregate queries over public property graphs. Rigid security analysis shows that our proposed scheme can protect the privacy of user queries and results as well as achieve access pattern privacy. In addition, extensive experiments also demonstrate the efficiency of our scheme in terms of computational overheads.
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来源期刊
CiteScore
11.80
自引率
2.80%
发文量
114
期刊介绍: The IEEE Transactions on Big Data publishes peer-reviewed articles focusing on big data. These articles present innovative research ideas and application results across disciplines, including novel theories, algorithms, and applications. Research areas cover a wide range, such as big data analytics, visualization, curation, management, semantics, infrastructure, standards, performance analysis, intelligence extraction, scientific discovery, security, privacy, and legal issues specific to big data. The journal also prioritizes applications of big data in fields generating massive datasets.
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