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Cloaking locations for anonymous location based services: a hybrid approach

机译:隐藏基于匿名位置的服务的位置:一种混合方法

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摘要

An important privacy issue in Location Based Services is to hide a user’s identity while still provide quality location based services. Previous work has addressed the problem of locational $mathcal{K}$ -anonymity either based on centralized or decentralized schemes. However, a centralized scheme relies on an anonymizing server (AS) for location cloaking, which may become the performance bottleneck when there are large number of clients. More importantly, holding information in a centralized place is more vulnerable to malicious attacks. A decentralized scheme depends on peer communication to cloak locations and is more scalable. However, it may pose too much computation and communication overhead to the clients. The service fulfillment rate may also be unsatisfied especially when there are not enough peers nearby. This paper proposes a new hybrid framework called HiSC that balances the load between the AS and mobile clients. HiSC partitions the space into base cells and a mobile client claims a surrounding area consisting of base cells. The number of mobile clients in the surrounding cells is kept and updated at both client and AS sides. A mobile client can either request cloaking service from the centralized AS or use a peer-to-peer approach for spatial cloaking based on personalized privacy, response time, and service quality requirements. HiSC can elegantly distribute the work load between the AS and the mobile clients by tuning one system parameter base cell size and two client parameters - surrounding cell size and tolerance count. By integrating salient features of two schemes, HiSC successfully preserves query anonymity and provides more scalable and consistent service. Both the AS and the clients can enjoy much less work load. Additionally, we propose a simple yet effective random range shifting algorithm to prevent possible privacy leakage that would exist in the original P2P approach. Our experiments show that HiSC can elegantly balance the work load based on privacy requirements and client distribution. HiSC provides close to optimal service quality. Meanwhile, it reduces the response time by more than an order of magnitude from both the P2P scheme and the centralized scheme when anonymity level(value of $mathcal{K}$ ) or number of clients is large. It also reduces the update message cost of the AS by nearly 6 times and the peer searching message cost of the clients by more than an order of magnitude.
机译:基于位置的服务中的一个重要的隐私问题是隐藏用户的身份,同时仍提供高质量的基于位置的服务。先前的工作已经解决了基于集中式或分散式方案的位置$ mathcal {K} $-匿名性的问题。但是,集中式方案依赖于匿名服务器(AS)进行位置隐藏,当有大量客户端时,这可能成为性能瓶颈。更重要的是,将信息保存在集中的位置更容易受到恶意攻击。分散的方案依赖于对等方通信来隐瞒位置,并且更具可伸缩性。但是,这可能给客户端带来过多的计算和通信开销。服务实现率也可能不令人满意,尤其是当附近没有足够的对等点时。本文提出了一种称为HiSC的新混合框架,该框架平衡了AS和移动客户端之间的负载。 HiSC将空间划分为基本单元,移动客户端声明由基本单元组成的周围区域。客户端和AS端都保留并更新周围小区中移动客户端的数量。移动客户端可以从集中式AS请求隐藏服务,也可以使用基于个人隐私,响应时间和服务质量要求的对等方法进行隐藏空间。 HiSC可以通过调整一个系统参数基本像元大小和两个客户机参数(周围像元大小和容忍度)来优雅地在AS和移动客户之间分配工作负载。通过整合两种方案的显着特征,HiSC成功地保留了查询匿名性,并提供了更具可扩展性和一致性的服务。 AS和客户都可以享受更少的工作量。此外,我们提出了一种简单而有效的随机范围移位算法,以防止原始P2P方法中可能存在的隐私泄漏。我们的实验表明,HiSC可以根据隐私要求和客户分布情况很好地平衡工作负载。 HiSC提供接近最佳的服务质量。同时,当匿名级别($ mathcal {K} $的值)或客户端数量较大时,它从P2P方案和集中式方案中将响应时间减少了一个数量级以上。它还将AS的更新消息成本降低了近6倍,并将客户端的对等搜索消息成本降低了一个数量级以上。

著录项

  • 来源
    《GeoInformatica》 |2009年第2期|159-182|共24页
  • 作者

    Chengyang Zhang; Yan Huang;

  • 作者单位

    Department of Computer Science and Engineering University of North Texas Research Park 3940 N. Elm Room F236 Denton TX 76207 USA;

    Department of Computer Science and Engineering University of North Texas Research Park 3940 N. Elm Room F236 Denton TX 76207 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Location based service; Location privacy; Spatial cloaking;

    机译:基于位置的服务;位置隐私;空间伪装;

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