A Quantum Resistant Lattice-based Blind Signature Scheme for Blockchain

Hakjun Lee
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Abstract

In the 4th industrial revolution, the blockchain that distributes and manages data through a P2P network is used as a new decentralized networking paradigm in various fields such as manufacturing, culture, and public service. However, with the advent of quantum computers, quantum algorithms that are able to break existing cryptosystems such as hash function, symmetric key, and public key cryptography have been introduced. Currently, because most major blockchain systems use an elliptic curve cryptography to generate signatures for transactions, they are insecure against the quantum adversary. For this reason, the research on the quantum-resistant blockchain that utilizes lattice-based cryptography for transaction signatures is needed. Therefore, in this paper, we propose a blind signature scheme for the blockchain in which the contents of the signature can be verified later, as well as signing by hiding the contents to be signed using lattice-based cryptography with the property of quantum resistance. In addition, we prove the security of the proposed scheme using a random oracle model.
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区块链量子抗格盲签名方案
在第四次产业革命中,通过P2P网络分发和管理数据的区块链在制造、文化、公共服务等各个领域被用作新的分散式网络范例。但是,随着量子计算机的出现,出现了能够破解哈希函数、对称密钥、公钥加密等现有密码系统的量子算法。目前,由于大多数主要的区块链系统使用椭圆曲线加密技术为交易生成签名,因此它们对量子对手是不安全的。因此,有必要研究利用基于格的加密技术进行交易签名的抗量子区块链。因此,在本文中,我们提出了区块链的盲签名方案,其中签名的内容可以稍后验证,并使用具有量子抵抗特性的基于格的加密技术隐藏签名的内容进行签名。此外,我们使用随机oracle模型证明了该方案的安全性。
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