Development of a protocol for a closed mobile internet channel based on post-quantum algorithms

Сергій Євсєєв, С.С. Погасій, Владислав Сергійович Хвостенко
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引用次数: 1

Abstract

The development of computing technologies has made it possible not only to expand the range of mobile communication services, but also to significantly increase computing capabilities. The emergence of mobile Internet, 4G, 5G technologies makes it possible to talk about a fundamentally different approach to ensuring the quality of service to network customers, creating fundamentally new approaches to ensuring the efficiency and reliability of transmitted information flows. However, such a rapid growth of GSM technologies without the introduction of security services leads to active actions of attackers and cyber terrorists, the emergence of new and modification of known threats. Mobile communication channels are used by cybercriminals for selfish purposes of access to database resources not only of the mobile Internet, but also to the databases of information and communication systems and networks. The article proposes a fundamentally new approach to ensuring the closure of the voice channel of the mobile Internet based on post-quantum cryptography algorithms – McEliece and Niederreiter crypto-code constructions on elliptic codes. This approach provides not only the offline mode of closing the voice channel and creating a VPN channel in tunnel mode, but also the required level of cryptographic strength in the face of the emergence of full-scale quantum computers.
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基于后量子算法的封闭移动互联网信道协议开发
计算技术的发展不仅扩大了移动通信服务的范围,而且大大提高了计算能力。移动互联网、4G、5G技术的出现,使我们有可能讨论一种完全不同的方式来确保对网络客户的服务质量,创造一种全新的方式来确保传输信息流的效率和可靠性。然而,在没有引入安全服务的情况下,GSM技术的快速增长导致攻击者和网络恐怖分子的积极行动,新威胁的出现和已知威胁的修改。网络犯罪分子利用移动通信渠道获取移动互联网的数据库资源,同时也获取信息通信系统和网络的数据库资源。本文提出了一种基于后量子加密算法的移动互联网语音通道封闭的全新方法——椭圆码上的McEliece和Niederreiter密码结构。这种方法不仅提供了关闭语音通道和在隧道模式下创建VPN通道的离线模式,而且还提供了面对全尺寸量子计算机出现时所需的加密强度级别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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发文量
15
审稿时长
6 weeks
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