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Secure Data Encryption Based on Quantum Walks for 5G Internet of Things Scenario

机译:基于Quantum Walks的5G物联网安全数据加密方案

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摘要

Fifth generation (5G) networks are the base communication technology for connecting objects in the Internet of Things (IoT) environment. 5G is being developed to provide extremely large capacity, robust integrity, high bandwidth, and low latency. With the development and innovating new techniques for 5G-IoT, it surely will drive to new enormous security and privacy challenges. Consequently, secure techniques for data transmissions will be needed as the basis for 5G-IoT technology to address these arising challenges. Therefore, various traditional security mechanisms are provided for 5G-IoT technologies and most of them are built on mathematical foundations. With the growth of quantum technologies, traditional cryptographic techniques may be compromised due to their mathematical computation based construction. Quantum walks (QWs) is a universal quantum computational model, which possesses inherent cryptographic features that can be utilized to build efficient cryptographic mechanisms. In this paper, we use the features of quantum walk to construct a new S-box method which plays a significant role in block cipher techniques for 5G-IoT technologies. As an application of the presented S-box mechanism and controlled alternate quantum walks (CAQWs) for 5G-IoT technologies a new robust video encryption mechanism is proposed. As well as to fulfill needs of encryption for varied files in 5G-IoT, we utilize the features of quantum walk to propose a novel encryption strategy for secure transmission of sensitive files in 5G-IoT paradigm. The analyses and results of the proposed cryptosystems show that it has better security properties and efficacy in terms of cryptographic performance.
机译:第五代(5G)网络是用于在物联网(IoT)环境中连接对象的基础通信技术。 5G正在开发中,以提供超大容量,鲁棒的完整性,高带宽和低延迟。随着5G-IoT的发展和创新技术的发展,它肯定会带来新的巨大安全和隐私挑战。因此,将需要安全的数据传输技术作为5G-IoT技术的基础,以解决这些新出现的挑战。因此,为5G-IoT技术提供了各种传统的安全机制,其中大多数建立在数学基础上。随着量子技术的发展,传统的密码技术由于其基于数学计算的构造而可能受到损害。量子行走(QWs)是一种通用的量子计算模型,它具有固有的加密功能,可用于构建有效的加密机制。在本文中,我们利用量子漫游的特征构建了一种新的S-box方法,该方法在5G-IoT技术的分组密码技术中起着重要作用。作为针对5G-IoT技术的提出的S-box机制和受控交替量子步态(CAQW)的一种应用,提出了一种新的鲁棒视频加密机制。为了满足5G-IoT中各种文件的加密需求,我们利用量子漫游的功能提出了一种新颖的加密策略,用于在5G-IoT范式中安全传输敏感文件。所提出的密码系统的分析和结果表明,就密码性能而言,它具有更好的安全性和有效性。

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    Menoufia Univ Math & Comp Sci Dept Fac Sci Shibin Al Kawm 32511 Egypt|Nile Univ Sch Informat Technol & Comp Sci Giza 12588 Egypt|Univ Jeddah Dept Cybersecur Coll Comp Sci & Engn Jeddah 23890 Saudi Arabia|Harbin Inst Technol Sch Comp Sci & Technol Harbin 150080 Peoples R China;

    Menoufia Univ Math & Comp Sci Dept Fac Sci Shibin Al Kawm 32511 Egypt;

    Warsaw Univ Technol Inst Comp Sci Fac Elect & Informat Technol PL-00665 Warsaw Poland;

    Virginia Commonwealth Univ Sch Engn Dept Comp Sci Med Coll Virginia Campus Richmond VA 23284 USA;

    Tecnol Monterrey Escuela Ingn & Ciencias Monterrey 64849 Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    5G networks; IoT; video encryption; quantum walks; security analysis;

    机译:5G网络;物联网视频加密;量子行走安全分析;

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