隐身区域的不同私隐扰动对位置隐私的影响

Hoa T. B. Ngo, Jong Kim
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引用次数: 32

摘要

移动设备的日益普及引发了基于位置的服务(LBS)的发展。通过向LBS提供位置信息,移动用户可以利用位置信息享受到各种有用的应用程序,但也可能遭受私人信息泄露的困扰。在保证实用性的同时,需要对移动用户的位置信息进行保密,以达到理想的服务质量。现有的基于k -匿名和Hilbertcurve隐蔽区域生成的位置隐私增强技术在隐私保护和服务质量方面具有优势,但由于产生较大的隐蔽区域而导致查询处理和通信效率降低。本文提出了一种新的位置隐私保护方案,该方案利用一些基于差分隐私的概念和机制,从多个旋转和移位版本的希尔伯特曲线中发布最优大小的隐藏区域。实验结果表明,与以前的希尔伯特曲线方法相比,我们的方案显著减小了隐形区域的平均尺寸。我们还展示了如何量化对手对用户位置数据执行推理攻击的能力,以及如何将对手的成功率限制在设计的阈值下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Location Privacy via Differential Private Perturbation of Cloaking Area
The increasing use of mobile devices has triggered the development of location based services (LBS). By providing location information to LBS, mobile users can enjoy variety of useful applications utilizing location information, but might suffer the troubles of private information leakage. Location information of mobile users needs to be kept secret while maintaining utility to achieve desirable service quality. Existing location privacy enhancing techniques based on K-anonymity and Hilbertcurve cloaking area generation showed advantages in privacy protection and service quality but disadvantages due to the generation of large cloaking areas that makes query processing and communication less effective. In this paper we propose a novel location privacy preserving scheme that leverages some differential privacy based notions and mechanisms to publish the optimal size cloaking areas from multiple rotated and shifted versions of Hilbert curve. With experimental results, we show that our scheme significantly reduces the average size of cloaking areas compared to previous Hilbert curve method. We also show how to quantify adversary's ability to perform an inference attack on user location data and how to limit adversary's success rate under a designed threshold.
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