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On the construction of a post-quantum blockchain for smart city

机译:关于智能城市后量子区块链的建设

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摘要

Owing to some special characteristics and features, blockchain is a very useful technique that can securely organize diverse devices in a smart city. It finds wide applications, especially in distributed environments, where entities such as wireless sensors need to be certain of the authenticity of the server. As contemporary blockchain techniques that address post-quantum concerns have not been designed, in this study, we investigate a blockchain in the post-quantum setting and seek to discover how it can resist attacks from quantum computing. In addition, traditional proof of work (PoW)-based consensus protocols such as Bitcoin cannot supply memory mining, and the transaction capacity of each block in a blockchain is limited and needs to be expanded. Thus, a new post-quantum proof of work (post-quantum PoW) consensus algorithm for security and privacy of smart city applications is proposed. It can be used to not only protect a blockchain under a quantum computing attack compared to existing classical hash-based PoW algorithms but also to supply memory mining. Meanwhile, an identity-based post-quantum signature is embedded into a transaction process to construct lightweight transactions. Subsequently, we provide a detailed description on the execution of the post-quantum lightweight transaction in a blockchain. Overall, this work can help enrich the research on future post-quantum blockchain and support the construction or architecture of emerging blockchain-based smart cities.
机译:由于一些特殊的特点和特点,区块链是一种非常有用的技术,可以在智能城市安全地组织各种设备。它发现广泛的应用,尤其是在分布式环境中,其中无线传感器等实体需要确定服务器的真实性。作为当代区块链技术,在本研究中尚未设计出地解决量子区的技术,我们在后量子环境中调查了一个区块链,并寻求发现它如何抵抗量子计算的攻击。此外,基于传统的工作证明(POW)基于比特币等共识协议不能提供内存挖掘,并且区块链中每个块的交易容量是有限的,需要扩展。因此,提出了一种新的Quantum后工作证明(Quantumum Pow)智能城市应用程序的安全和隐私的共识算法。与现有的经典散列的POW算法相比,它可以用于在量子计算攻击下保护区块链条,而且可以用于提供存储器挖掘。同时,将基于身份的课后签名嵌入到交易过程中以构建轻量级事务。随后,我们提供关于在区块链中执行Quantum轻量级交易的详细描述。总体而言,这项工作可以帮助丰富未来量子区块链的研究,并支持新兴区块链的智能城市的建设或建筑。

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