基于区块链的位置证明生成和验证

Mohammad Reza Nosouhi, Shui Yu, M. Grobler, Qingyi Zhu, Yong Xiang
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引用次数: 5

摘要

在位置敏感的应用程序中,服务提供者需要验证用户的位置,以便为他们提供对服务或利益的访问。这为不诚实的用户提供了通过提交虚假位置声明来欺骗他们位置的动机。为了解决这个问题,迄今为止文献中已经提出了许多位置证明机制。然而,他们面临着不同的安全和隐私挑战。在本文中,我们利用区块链技术的独特功能设计了一个分散的架构,其中移动用户充当证人并为其他用户生成位置证明。在提议的方案中,位置证明作为交易的一部分发布,该交易被广播到点对点网络中,在那里验证者可以提取它以进行进一步验证。一旦交易被成功验证,它就被存储在公共分类账中。我们的安全和隐私分析表明,所提出的方案保护了用户的隐私,并在证明者-证明者和证明者-见证合谋的情况下取得了可靠的性能。此外,我们在Android平台上的原型实现表明,所提出方案的位置证明生成过程比目前的去中心化方案更快,并且需要较少的计算资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Blockchain–Based Location Proof Generation and Verification
In location–sensitive applications, service providers need to verify the location of users in order to provide them with access to a service or benefit. This provides dishonest users with an incentive to cheat on their location by submitting fake location claims. To address this issue, a number of location proof mechanisms have been proposed in literature to date. However, they are faced with different security and privacy challenges. In this paper, we utilize the unique features of the blockchain technology to design a decentralized architecture in which mobile users act as witnesses and generate location proofs for other users. In the proposed scheme, a location proof is issued as part of a transaction that is broadcasted into a peer–to–peer network where it can be picked up by verifiers for further verification. Once a transaction is successfully verified, it is stored in a public ledger. Our security and privacy analysis shows that the proposed scheme preserves users’ privacy and achieves a reliable performance against Prover–Prover and Prover–Witness collusions. Moreover, our prototype implementation on the Android platform shows that the location proof generation process in the proposed scheme is faster than the current decentralized schemes and requires low computational resources.
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