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An Efficient ECC-Based Authentication Scheme against Clock Asynchronous for Spatial Information Network

机译:一种高效的基于ECC的身份验证方案对空间信息网络的时钟异步

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With the rapid development of mobile communication technology, the spatial information networks (SIN) have been used for various space tasks’ coverage in commercial, meteorology, emergency, and military scenarios. In SIN, one basic issue is to achieve mutual authentication and secret communication among the participants. Although many researches have designed authentication schemes for SIN, they have not considered the situation where the clock is not synchronized as the broad coverage space in wireless environment. In this paper, we disclose several flaws of Altaf et al.’s scheme (2020), in which the main weakness is that a malicious user can easily obtain the master key of the network control center after launching the offline password-guessing attack. Then, we design an authentication scheme against clock asynchronous for SIN by utilizing elliptic curve cryptosystem (ECC) and identity-based cryptography (IBC). Based on a brief introduction to the main design ideas of our scheme, the security protocol analysis tools of Scyther and AVISPA are used to prove that the scheme can resist various existing active and passive attacks. We further discuss our scheme that provides five essential requirements of security properties to design a robust scheme for SIN and is superior in terms of resistance to security functionality and computational performance by comparison with two other representative schemes. As a result, our scheme will be workable and efficient security for mobile users in the actual environment.
机译:随着移动通信技术的快速发展,空间信息网络(SIN)已被用于商业,气象,紧急情况和军事方案中的各种空间任务覆盖范围。在罪中,一个基本问题是实现参与者之间的相互认证和秘密通信。虽然许多研究为SIN设计了认证方案,但它们还没有考虑时钟不同步作为无线环境中的广泛覆盖空间的情况。在本文中,我们披露了altaf等人的几个缺陷。的计划(2020),其中主要的弱点是恶意用户在推出脱机密码猜测攻击后可以轻松获得网络控制中心的主密钥。然后,我们通过利用椭圆曲线密码系统(ECC)和基于身份的加密(IBC)来设计针对SIN异步时钟的认证方案。根据我们计划的主要设计思路的简要介绍,SCYTHER和AVISPA的安全协议分析工具用于证明该方案可以抵抗各种现有的主动和被动攻击。我们进一步讨论了我们的计划,为安全性能提供了五个基本要求,以设计犯罪的强大方案,并且通过与另外两个代表方案进行比较,对安全功能和计算性能的抵抗力卓越。因此,我们的计划将为实际环境中的移动用户提供可行和有效的安全性。

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