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Efficient Deniable Authentication for Signatures Application to Machine-Readable Travel Document

机译:有效签名签名对机器可读旅行证件的有效拒绝身份验证

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摘要

Releasing a classical digital signature faces to privacy issues. Indeed, there are cases where the prover needs to authenticate some data without making it possible for any malicious verifier to transfer the proof to anyone else. It is for instance the case for e-passports where the signature from the national authority authenticates personal data. To solve this problem, we can prove knowledge of a valid signature without revealing it. This proof should be non-transferable. We first study deniability for signature verification. Deniability is essentially a weaker form of non-transferability. It holds as soon as the protocol is finished (it is often called offline non-transferability). We introduce Offline Non-Transferable Authentication Protocol (ON-TAP) and we show that it can be built by using a classical signature scheme and a deniable zero-knowledge proof of knowledge. For that reason, we use a generic transform for i7-protocols. Finally, we give examples to upgrade signature standards based on RSA or ElGamal into an ONTAP. Our examples are well-suited for implementation in e-passports.
机译:发行经典的数字签名面临着隐私问题。确实,在某些情况下,证明者需要对某些数据进行身份验证,而又无法使任何恶意验证者将证明转移给其他任何人。例如,对于电子护照,国家主管部门的签名会验证个人数据。为了解决此问题,我们可以证明有效签名的知识而无需透露它。该证明不可转让。我们首先研究签名验证的可否认性。可否认性实质上是不可转移性的较弱形式。协议完成后立即保留(通常称为脱机不可传输性)。我们介绍了脱机不可传输身份验证协议(ON-TAP),并表明可以使用经典签名方案和可否认的零知识知识证明来构建它。因此,我们对i7协议使用通用转换。最后,我们给出了将基于RSA或ElGamal的签名标准升级到ONTAP的示例。我们的示例非常适合在电子护照中实施。

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