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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Privacy-Conscious Location-Based Queries in Mobile Environments
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Privacy-Conscious Location-Based Queries in Mobile Environments

机译:移动环境中基于隐私的基于位置的查询

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In location-based services, users with location-aware mobile devices are able to make queries about their surroundings anywhere and at any time. While this ubiquitous computing paradigm brings great convenience for information access, it also raises concerns over potential intrusion into user location privacy. To protect location privacy, one typical approach is to cloak user locations into spatial regions based on user-specified privacy requirements, and to transform location-based queries into region-based queries. In this paper, we identify and address three new issues concerning this location cloaking approach. First, we study the representation of cloaking regions and show that a circular region generally leads to a small result size for region-based queries. Second, we develop a mobility-aware location cloaking technique to resist trace analysis attacks. Two cloaking algorithms, namely MaxAccu_Cloak and MinComm_Cloak, are designed based on different performance objectives. Finally, we develop an efficient polynomial algorithm for evaluating circular-region-based kNN queries. Two query processing modes, namely bulk and progressive, are presented to return query results either all at once or in an incremental manner. Experimental results show that our proposed mobility-aware cloaking algorithms significantly improve the quality of location cloaking in terms of an entropy measure without compromising much on query latency or communication cost. Moreover, the progressive query processing mode achieves a shorter response time than the bulk mode by parallelizing the query evaluation and result transmission.
机译:在基于位置的服务中,具有位置感知型移动设备的用户能够随时随地查询周围的环境。尽管这种无处不在的计算范例为信息访问带来了极大的便利,但也引起了对潜在侵入用户位置隐私的担忧。为了保护位置隐私,一种典型的方法是根据用户指定的隐私要求将用户位置隐藏在空间区域中,并将基于位置的查询转换为基于区域的查询。在本文中,我们确定并解决了有关此位置隐藏方法的三个新问题。首先,我们研究隐身区域的表示形式,并表明圆形区域通常导致基于区域的查询的结果尺寸较小。其次,我们开发了一种可感知移动性的位置隐藏技术,以抵抗痕量分析攻击。根据不同的性能目标设计了两种掩盖算法,即MaxAccu_Cloak和MinComm_Cloak。最后,我们开发了一种有效的多项式算法来评估基于圆形区域的kNN查询。提出了两种查询处理模式,即批量查询和渐进查询,以一次或以增量方式返回查询结果。实验结果表明,我们提出的可感知移动性的隐蔽算法在熵测度方面显着提高了位置隐蔽的质量,而不会大幅降低查询延迟或通信成本。此外,通过并行化查询评估和结果传输,渐进式查询处理模式比批量模式实现了更短的响应时间。

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