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A Blockchain System Based on Quantum-Resistant Digital Signature

机译:基于量子耐数字签名的区块线系统

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摘要

Blockchain, which has a distributed structure, has been widely used in many areas. Especially in the area of smart cities, blockchain technology shows great potential. The security issues of blockchain affect the construction of smart cities to varying degrees. With the rapid development of quantum computation, elliptic curves cryptosystems used in blockchain are not secure enough. This paper presents a blockchain system based on lattice cipher, which can resist the attack of quantum computation. The most challenge is that the size of public keys and signatures used by lattice cryptosystems is typically very large. As a result, each block in a blockchain can only accommodate a small number of transactions. It will affect the running speed and performance of the blockchain. For overcoming this problem, we proposed a way that we only put the hash values of public keys and signatures on the blockchain and store the complete content of them on an IPFS (interplanetary file system). In this way, the number of bytes occupied by each transaction is greatly reduced. We design a bitcoin exchange scheme to evaluate the performance of the proposed quantum-resistant blockchain system. The simulation platform is verified to be available and effective.
机译:具有分布式结构的区块链已广泛应用于许多领域。特别是在智能城市地区,区块链技术表现出极大的潜力。区块链的安全问题影响了智能城市的建设到不同程度。随着量子计算的快速发展,区块链中使用的椭圆曲线密码系统不够安全。本文介绍了一种基于晶格密码的区块线,可以抵抗量子计算的攻击。最挑战的是,格子密码系统使用的公钥和签名的大小通常非常大。结果,区块链中的每个块只能容纳少量事务。它会影响区块链的运行速度和性能。为了克服这个问题,我们提出了一种方式,即我们只将公钥和签名的哈希值放在区块链上,并将它们的完整内容存储在IPF(行星际文件系统)上。以这种方式,每笔交易占用的字节数大大减少了。我们设计了比特币交换方案,以评估所提出的量子抗形区块系统的性能。验证仿真平台可用和有效。

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