面向物联网环境的通用量子区块链安全框架:架构、安全优势和未来研究

Mohammad Wazid;Ashok Kumar Das;Youngho Park
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引用次数: 0

摘要

量子密码学有可能保护易受各种攻击(如经典攻击,包括与量子有关的攻击)的基础设施的安全。因此,对于未来的安全在线基础设施和应用(如基于区块链的框架)来说,量子密码学似乎是一项大有可为的技术。在本文中,我们为物联网(IoT)环境提出了一个通用的量子区块链安全框架。然后,我们讨论了拟议框架的一些潜在应用。我们还强调了基于量子密码学的系统的安全优势。我们解释了区块链的工作原理、区块链的应用、区块链的类型、区块链的结构、经典区块链中的区块链结构以及量子区块链中的区块结构。接下来,重点介绍了量子计算对基于区块链框架的安全性的不利影响。此外,还比较了基于量子密码学的安全方案,如量子密钥分发、量子数字签名和量子散列方案。最后,介绍了与所设计的物联网通用量子区块链安全框架相关的一些未来研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generic Quantum Blockchain-Envisioned Security Framework for IoT Environment: Architecture, Security Benefits and Future Research
Quantum cryptography has the potential to secure the infrastructures that are vulnerable to various attacks, like classical attacks, including quantum-related attacks. Therefore, quantum cryptography seems to be a promising technology for the future secure online infrastructures and applications, like blockchain-based frameworks. In this article, we propose a generic quantum blockchain-envisioned security framework for an Internet of Things (IoT) environment. We then discuss some potential applications of the proposed framework. We also highlight the security advantages of quantum cryptography-based systems. We explain the working of blockchain, applications of blockchain, types of blockchain, the structure of blockchain, the structure of blockchain in a classical blockchain, and the structure of a block in a quantum blockchain context. Next, the adverse effects of quantum computing on the security of blockchain-based frameworks are highlighted. Furthermore, the comparisons of quantum cryptography-based security schemes, like quantum key distribution, quantum digital signature, and quantum hashing schemes, are provided. Finally, some future research directions related to the designed generic quantum blockchain-envisioned security framework for IoT are provided.
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CiteScore
12.60
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