Transforming Face-to-Face Identity Proofing into Anonymous Digital Identity Using the Bitcoin Blockchain

D. Augot, H. Chabanne, Olivier Clémot, William George
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引用次数: 35

Abstract

The most fundamental purpose of blockchain technology is to enable persistent, consistent, distributed storage of information. Increasingly common are authentication systems that leverage this property to allow users to carry their personal data on a device while a hash of this data is signed by a trusted authority and then put on a blockchain to be compared against. For instance, in 2015, MIT introduced a schema for the publication of their academic certificates based on this principle. In this work, we propose a way for users to obtain assured identities based on face-to-face proofing that can then be validated against a record on a blockchain. Moreover, in order to provide anonymity, instead of storing a hash, we make use of a scheme of Brands to store a commitment against which one can perform zero-knowledge proofs of identity. We also enforce the confidentiality of the underlying data by letting users control a secret of their own.We show how our schema can be implemented on Bitcoin's blockchain and how to save bandwidth by grouping commitments using Merkle trees to minimize the number of Bitcoin transactions that need to be sent. Finally, we describe a system in which users can gain access to services thanks to the identity records of our proposal.
使用比特币区块链将面对面身份证明转变为匿名数字身份
区块链技术最根本的目的是实现持久、一致、分布式的信息存储。越来越普遍的是,利用这一属性的身份验证系统允许用户在设备上携带他们的个人数据,而这些数据的哈希值由受信任的权威机构签名,然后放在区块链上进行比较。例如,2015年,麻省理工学院基于这一原则推出了一种发布学术证书的模式。在这项工作中,我们提出了一种方法,让用户基于面对面的证明获得可靠的身份,然后可以根据区块链上的记录进行验证。此外,为了提供匿名性,我们使用brand方案来存储承诺,而不是存储哈希,人们可以根据该承诺执行零知识身份证明。我们还通过让用户控制自己的秘密来加强底层数据的机密性。我们展示了如何在比特币的区块链上实现我们的模式,以及如何通过使用Merkle树对承诺进行分组来节省带宽,以最大限度地减少需要发送的比特币交易数量。最后,我们描述了一个系统,在这个系统中,用户可以通过我们提案的身份记录访问服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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