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首页> 外文期刊>Geoinformatica: An international journal of advances of computer science for geographic >Spatial cloaking for anonymous location-based services in mobile peer-to-peer environments
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Spatial cloaking for anonymous location-based services in mobile peer-to-peer environments

机译:移动对等环境中匿名基于位置的服务的空间隐匿

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摘要

This paper tackles a privacy breach in current location-based services (LBS) where mobile users have to report their exact location information to an LBS provider in order to obtain their desired services. For example, a user who wants to issue a query asking about her nearest gas station has to report her exact location to an LBS provider. However, many recent research efforts have indicated that revealing private location information to potentially untrusted LBS providers may lead to major privacy breaches. To preserve user location privacy, spatial cloaking is the most commonly used privacy-enhancing technique in LBS. The basic idea of the spatial cloaking technique is to blur a user's exact location into a cloaked area that satisfies the user specified privacy requirements. Unfortunately, existing spatial cloaking algorithms designed for LBS rely on fixed communication infrastructure, e. g., base stations, and centralized/distributed servers. Thus, these algorithms cannot be applied to a mobile peer-to-peer (P2P) environment where mobile users can only communicate with other peers through P2P multi-hop routing without any support of fixed communication infrastructure or servers. In this paper, we propose a spatial cloaking algorithm for mobile P2P environments. As mobile P2P environments have many unique limitations, e.g., user mobility, limited transmission range, multi-hop communication, scarce communication resources, and network partitions, we propose three key features to enhance our algorithm: (1) An information sharing scheme enables mobile users to share their gathered peer location information to reduce communication overhead; (2) A historical location scheme allows mobile users to utilize stale peer location information to overcome the network partition problem; and (3) A cloaked area adjustment scheme guarantees that our spatial cloaking algorithm is free from a "center-of-cloaked-area" privacy attack. Experimental results show that our P2P spatial cloaking algorithm is scalable while guaranteeing the user's location privacy protection.
机译:本文解决了当前基于位置的服务(LBS)中的隐私违规问题,在这种情况下,移动用户必须向LBS提供商报告其确切的位置信息才能获得所需的服务。例如,想要发布询问她最近的加油站的用户的用户必须向LBS提供者报告她的确切位置。但是,许多最近的研究工作表明,向可能不受信任的LBS提供者泄露私人位置信息可能会导致严重的隐私泄露。为了保护用户位置的隐私,空间隐身是LBS中最常用的隐私增强技术。空间隐身技术的基本思想是将用户的确切位置模糊到可以满足用户指定的隐私要求的隐身区域中。不幸的是,现有的为LBS设计的空间隐蔽算法依赖于固定的通信基础架构,例如:例如,基站和集中式/分布式服务器。因此,这些算法无法应用于移动对等(P2P)环境,在该环境中,移动用户只能通过P2P多跳路由与其他对等方通信,而无需任何固定通信基础架构或服务器的支持。在本文中,我们提出了一种针对移动P2P环境的空间隐身算法。由于移动P2P环境具有许多独特的局限性,例如用户移动性,有限的传输范围,多跳通信,稀缺的通信资源和网络分区,因此我们提出了三个关键功能来增强我们的算法:(1)信息共享方案使移动用户共享他们收集的对等位置信息以减少通信开销; (2)历史定位方案允许移动用户利用陈旧的对等位置信息来克服网络分区问题; (3)隐蔽区域调整方案可确保我们的空间隐蔽算法不受“隐蔽区域中心”隐私攻击的影响。实验结果表明,我们的P2P空间隐蔽算法具有可扩展性,同时可以保证用户的位置隐私保护。

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