基于位置服务位置虚拟位置干扰的隐私保护研究

IF 1.9 4区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS International Journal of Distributed Sensor Networks Pub Date : 2022-09-01 DOI:10.1177/15501329221125111
Ai Zhang, Xiaohui Li
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引用次数: 4

摘要

位置隐私是指用户在使用位置服务过程中所涉及的个人隐私和敏感的位置信息。实现位置隐私保护已成为研究的热点。然而,现有的位置隐私保护方案一方面容易受到背景知识攻击、边缘信息攻击和同质性攻击,另一方面对邻居数量有严格的约束。针对这些不足,提出了一种基于位置服务的虚拟位置干扰隐私保护算法。首先,利用WordNet结构构建虚拟位置候选集,保证语义区分,随机选择偏移位置,并符合概率相似性;然后,根据Heron公式对虚拟位置进行离散,过滤出虚拟位置集;最后,根据匿名级别构造安全匿名集。实验表明,该算法增强了隐私保护强度,提高了位置隐私的安全性。同时,考虑到定位点的稀疏和密集环境,减少了通信量和时间开销,提高了实用性。
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Research on privacy protection of dummy location interference for Location-Based Service location
Location privacy refers to the individual private and sensitive location information involved in the user’s access to location services. Achieving location privacy protection has become a hot topic of research. However, existing location privacy protection schemes are susceptible to background knowledge attack, edge information attack, and homogeneity attack, on the one hand, and strict constraint on the number of neighbors, on the other hand. To address these deficiencies, a dummy location interference privacy protection algorithm for Location-Based Service location is proposed. To begin with, the dummy location candidate set is constructed based on using WordNet structure to guarantee semantic differentiation, randomly selecting offset location, and conforming to probability similarity; next, the dummy location set is filtered out by discretizing dummy locations based on the Heron formula; finally, the secure anonymity set is constructed according to the anonymity level. Experiments show that the algorithm enhances the privacy protection strength and improves the security of location privacy. Meanwhile, the communication volume and time overhead are reduced and the practicality is boosted by taking into account the sparse and dense environment of location points.
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来源期刊
CiteScore
6.50
自引率
4.30%
发文量
94
审稿时长
3.6 months
期刊介绍: International Journal of Distributed Sensor Networks (IJDSN) is a JCR ranked, peer-reviewed, open access journal that focuses on applied research and applications of sensor networks. The goal of this journal is to provide a forum for the publication of important research contributions in developing high performance computing solutions to problems arising from the complexities of these sensor network systems. Articles highlight advances in uses of sensor network systems for solving computational tasks in manufacturing, engineering and environmental systems.
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