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CSEP: Circular shifting encryption protocols for location privacy protection

机译:CSEP:用于位置隐私保护的循环移位加密协议

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Location Based Service (LBS) is gaining popularity. As one fundamental LBS service, range search returns all Point of Interests (POIs) within a user-specified range. However, people also leave their location privacy at risks when using range search. How to provide a high-quality range search service while protecting users' location privacy is a challenging problem. Most existing approaches use space-filling curves and cloaked region method to provide privacy-preservation location services, but these methods cannot return the accurate results. In this paper, we propose a set of Circular Shifting Encryption Protocols (CSEP) based on homomorphism and circular shift for location privacy protection of range search. CSEP leverages homomorphic encryption to encrypt users' locations, and LBS servers compute distances on cyphertext. In this way, LBS server can return POIs within the specified range, while learning nothing about the user's real location. To accommodate the different query range and the private protection degree of users, we propose a circular shifting encryption method to reduce the redundancy and increase the degree of privacy protection. We implement a prototype of CSEP, and evaluate it with real POI set of a large-scale production LBS. Experimental results show that CSEP can provide reliable privacy protection and accurate range search, with reasonable compute overhead and communication overhead.
机译:基于位置的服务(LBS)越来越受欢迎。作为一项基本的LBS服务,范围搜索将返回用户指定范围内的所有兴趣点(POI)。但是,在使用范围搜索时,人们也会使自己的位置隐私受到威胁。如何在保护用户位置隐私的同时提供高质量的范围搜索服务是一个具有挑战性的问题。现有的大多数方法都使用空间填充曲线和隐蔽区域方法来提供隐私保护位置服务,但是这些方法无法返回准确的结果。在本文中,我们提出了一套基于同态和循环移位的循环移位加密协议(CSEP),用于范围搜索的位置隐私保护。 CSEP利用同态加密来加密用户的位置,LBS服务器计算密文上的距离。这样,LBS服务器可以返回指定范围内的POI,而无需了解用户的真实位置。为了适应不同的查询范围和用户的隐私保护程度,我们提出了一种循环移位加密方法,以减少冗余并提高隐私保护程度。我们实施CSEP的原型,并使用大规模生产LBS的真实POI集对其进行评估。实验结果表明,CSEP可以提供可靠的隐私保护和准确的范围搜索,并具有合理的计算开销和通信开销。

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