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PASPORT: A Secure and Private Location Proof Generation and Verification Framework

机译:Pasport:安全和私人的位置证明生成和验证框架

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摘要

Recently, there has been a rapid growth in location-based systems and applications in which users submit their location information to service providers in order to gain access to a service, resource, or reward. We have seen that in these applications, dishonest users have an incentive to cheat on their location. Unfortunately, no effective protection mechanism has been adopted by service providers against these fake location submissions. This is a critical issue that causes severe consequences for these applications. Motivated by this, we propose the Privacy-Aware and Secure Proof Of pRoximiTy (PASPORT) scheme in this article to address the problem. Using PASPORT, users submit a location proof (LP) to service providers to prove that their submitted location is true. PASPORT has a decentralized architecture designed for ad hoc scenarios in which mobile users can act as witnesses and generate LPs for each other. It provides user privacy protection as well as security properties, such as unforgeability and nontransferability of LPs. Furthermore, the PASPORT scheme is resilient to prover–prover collusions and significantly reduces the success probability of Prover–Witness collusion attacks. To further make the proximity checking process private, we propose P-TREAD, a privacy-aware distance bounding protocol and integrate it into PASPORT. To validate our model, we implement a prototype of the proposed scheme on the Android platform. Extensive experiments indicate that the proposed method can efficiently protect location-based applications against fake submissions.
机译:最近,基于位置的系统和应用程序的应用程序快速增长,其中用户将其位置信息提交给服务提供商,以便访问服务,资源或奖励。我们已经看到,在这些应用程序中,不诚实的用户在他们的位置欺骗了激励。不幸的是,服务提供商没有针对这些假地点提交的有效保护机制。这是一个关键问题,导致对这些应用的严重后果。受此激励,我们提出了本文中的隐私感知和安全证明(Pasport)方案以解决问题。使用Pasport,用户向服务提供商提交一个位置证明(LP),以证明他们提交的位置是真的。 Pasport有一个专为的分散式架构 ad hoc 移动用户可以充当目击者并为彼此生成LPS的方案。它提供了用户隐私保护以及安全性属性,例如LPS的不可识别性和非转移性。此外,PASPort方案对先货程序综合的丛集是有利的,并显着降低了证明证明勾结攻击的成功概率。为了进一步使接近检查过程私有,我们提出了P-Tread,一种隐私感知距离限定协议,并将其集成到Pasport中。为了验证我们的模型,我们在Android平台上实现了所提出的计划的原型。广泛的实验表明,该方法可以有效地保护基于位置的应用程序免受虚假提交的。

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