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CAP: A Context-Aware Privacy protection system for location-based services.

机译:CAP:一种基于上下文的隐私保护系统,用于基于位置的服务。

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摘要

Location Based Services (LBS) are information services that provide users with customized contents, such as the nearest restaurants/hotels/clinics, retrieved from a dedicated spatial database. They make use of technologies such as Global Positioning System (GPS), triangulation/triliteration etc. to get the geographical position of the user. Since the queries on spatial database include the user's current location, LBS may raise serious concerns on the user's location privacy. If disclosed, a user's location information may be misused in many ways by a malicious adversary who has access to the LBS server or even by the LBS provider. Therefore, our aim in this thesis is to provide an user with a system to protect her location privacy, without impeding the LBS.In this thesis, we address issues related to privacy protection for location-based services (LBS) without trusted-third parties (e.g., anonymizers). There are two critical challenges to such a system. First, the degree of privacy protection and LBS accuracy depends on the context, such as population and road density, around a user's location e.g. for an user in rural area, we use more perturbation than for an user in downtown to achieve the same level of privacy protection and LBS accuracy. Second, location privacy may be breached through not only an LBS query, but also via the network traffic that carries the query payload, leading to a dual requirement on data privacy and communication anonymity. In order to address these challenges, we introduce CAP, a Context- Aware Privacy-preserving LBS system with integrated protection for data privacy and communication anonymity. For data privacy, we propose a projection-based location data perturbation algorithm, called Various-size-grid Hilbert Curve (VHC) - mapping, which provides universal guarantees on privacy protection and LBS accuracy for all locations with diverse context. VHC-mapping is designed to require minimal storage and computational cost. For communication anonymity, CAP uses a revised version of Tor. In this revised version, we address the issue of QoS degradation due to Tor's random routing protocols. By exploiting the dual requirement with data privacy, we propose a set of new routing algorithms with significantly enhanced QoS. We have implemented a prototype of CAP which can be readily integrated with an existing LBS. Our theoretical analysis and experimental results validate CAP's effectiveness on privacy protection, LBS accuracy, and communication QoS.
机译:基于位置的服务(LBS)是一种信息服务,可为用户提供自定义内容,例如从专用空间数据库中检索到的最近的餐馆/酒店/诊所。他们利用诸如全球定位系统(GPS),三角测量/三叉戟等技术来获取用户的地理位置。由于对空间数据库的查询包括用户的当前位置,因此LBS可能会引起对用户位置隐私的严重关注。如果被公开,则用户的位置信息可能会被恶意访问者以多种方式滥用,该恶意访问者可以访问LBS服务器,甚至可以访问LBS提供者。因此,本文的目的是为用户提供一种在不妨碍LBS的情况下保护其位置隐私的系统。在本文中,我们解决了与无信任第三方的基于位置的服务(LBS)的隐私保护有关的问题。 (例如,匿名器)。这种系统存在两个关键挑战。首先,隐私保护的程度和LBS的准确性取决于用户位置周围的环境,例如人口和道路密度。对于农村地区的用户,我们要比市区的用户使用更多的干扰,以达到相同水平的隐私保护和LBS准确性。其次,不仅可以通过LBS查询,而且可以通过承载查询有效负载的网络流量来破坏位置隐私,从而导致对数据隐私和通信匿名性的双重要求。为了应对这些挑战,我们推出了CAP,这是一种具有上下文感知保护隐私的LBS系统,具有针对数据隐私和通信匿名性的集成保护。对于数据隐私,我们提出了一种基于投影的位置数据扰动算法,称为“各种大小网格希尔伯特曲线(VHC)-映射”,该算法为具有各种上下文的所有位置提供了隐私保护和LBS准确性的通用保证。 VHC映射设计为需要最少的存储和计算成本。对于通信匿名,CAP使用Tor的修订版。在此修订版中,我们解决了由于Tor的随机路由协议而导致QoS下降的问题。通过利用数据保密性的双重要求,我们提出了一组具有显着增强的QoS的新路由算法。我们已经实现了CAP的原型,该原型可以很容易地与现有的LBS集成。我们的理论分析和实验结果验证了CAP在隐私保护,LBS准确性和通信QoS方面的有效性。

著录项

  • 作者

    Pingley, Aniket.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Computer Science.
  • 学位 M.S.
  • 年度 2008
  • 页码 75 p.
  • 总页数 75
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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