基于位置的服务中的隐私感知隐身技术

Amina Hossain, A. Hossain, Sung-Jae Jang, Jae-Woo Chang
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引用次数: 12

摘要

GPS(全球定位系统)等位置检测设备的爆炸式增长,不断增加了基于位置服务(lbs)中用户隐私的威胁。然而,为了享受这些服务,用户必须准确地向LBS透露自己的确切位置。因此,如何有效地保护用户在访问LBS时的隐私是一个关键的挑战。为此,现有方法采用2PASS隐身框架,不仅隐藏了实际用户位置,而且减少了带宽消耗。然而,它遭受隐私攻击。因此,我们希望提供利用k-匿名机制保护用户隐私的解决方案。在本文中,我们提出了一种基于加权邻接图的k -匿名隐身技术,该技术可以确保用户隐私保护并减少带宽使用。我们的隐形方法有效地支持k近邻查询,而不会泄露查询发起者的私有信息。实验结果表明,我们的算法比现有的算法具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Privacy-Aware Cloaking Technique in Location-Based Services
The explosive growth of location-detection devices, such as GPS (Global Positioning System), continuously increasing users' privacy threat in location-based services (LBSs). However, in order to enjoy such services, the user must precisely disclose his/her exact location to the LBS. So, it is a key challenge to efficiently preserve user's privacy while accessing LBS. For this, the existing method employs a 2PASS cloaking framework that not only hides the actual user location but also reduces bandwidth consumption. However, it suffers from privacy attack. Therefore, we wish to provide the solution which can preserve user privacy by utilizing k-anonymity mechanism. In this paper, we propose a weighted adjacency graph based k -anonymous cloaking technique that can ensure users privacy protection and also reduce bandwidth usages. Our cloaking approach efficiently supports k-nearest neighbor queries without revealing private information of the query initiator. We demonstrate via experimental results that our algorithm yields much better performance than the existing one.
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