Learning with error-based key agreement and authentication scheme for satellite communication

IF 0.9 4区 计算机科学 Q3 ENGINEERING, AEROSPACE
Uddeshaya Kumar, Manish Garg
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引用次数: 7

Abstract

Satellite communication is one of the essential communication mechanisms that can be used for significant distance and under circumstances where the other communication mechanisms cannot work. Therefore, the security of this communication method is highly needed. Because in this era where information plays an important role, information security becomes the first priority for everyone. When we talk about information security, the key exchange and authentication are two key factors of information security. Whitfield Diffie and Martin Hellman1 proposed the first key exchange protocol. In the last two or three decades, various authentication schemes have been proposed to create a secure network that mainly depends on classical number–theoretical hard assumptions (factorization or discrete logarithm), but due to the Shor's2 algorithm, above-mentioned scheme is no longer secure because any discrete logarithm or factorization problems can be solved by Shor's algorithm in polynomial time if the quantum computer becomes the reality soon. As far as our knowledge goes, there is no authentication protocol for satellite communication, which is secure against quantum computer attacks. Therefore, in this paper, we first proposed authentication protocol for satellite communication based on ring learning with error which is secure against quantum attacks.

基于错误的卫星通信密钥协议学习与认证方案
卫星通信是一种重要的通信机制,可以在远距离和其他通信机制无法工作的情况下使用。因此,对这种通信方式的安全性提出了很高的要求。因为在这个信息扮演重要角色的时代,信息安全成为每个人的第一要务。当我们谈论信息安全时,密钥交换和身份验证是信息安全的两个关键因素。惠特菲尔德·迪菲和马丁·赫尔曼提出了第一个密钥交换协议。在过去的二三十年里,人们提出了各种认证方案来创建一个安全的网络,这些方案主要依赖于经典的数论硬假设(因子分解或离散对数),但由于Shor's2算法的出现,上述方案不再安全,因为如果量子计算机很快成为现实,任何离散对数或因子分解问题都可以用Shor's算法在多项式时间内解决。据我们所知,目前还没有针对量子计算机攻击的卫星通信认证协议。因此,在本文中,我们首次提出了一种基于带误差环学习的卫星通信认证协议,该协议可以抵御量子攻击。
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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来源期刊
CiteScore
4.10
自引率
5.90%
发文量
31
审稿时长
>12 weeks
期刊介绍: The journal covers all aspects of the theory, practice and operation of satellite systems and networks. Papers must address some aspect of satellite systems or their applications. Topics covered include: -Satellite communication and broadcast systems- Satellite navigation and positioning systems- Satellite networks and networking- Hybrid systems- Equipment-earth stations/terminals, payloads, launchers and components- Description of new systems, operations and trials- Planning and operations- Performance analysis- Interoperability- Propagation and interference- Enabling technologies-coding/modulation/signal processing, etc.- Mobile/Broadcast/Navigation/fixed services- Service provision, marketing, economics and business aspects- Standards and regulation- Network protocols
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