An Efficient Certificateless Forward-Secure Signature Scheme for Secure Deployments of the Internet of Things

Tahir Ali Shah, Insaf Ullah, Muhammad Asghar Khan, P. Lorenz, Nisreen Innab
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引用次数: 1

Abstract

As an extension of the wired network, the use of the wireless communication network has considerably boosted users’ productivity at work and in their daily lives. The most notable aspect of the wireless communication network is that it overcomes the constraints of the wired network, reduces the amount of cost spent on wire maintenance, and distributes itself in a manner that is both more extensive and flexible. Combining wireless communication with the Internet of Things (IoT) can be used in several applications, including smart cities, smart traffic, smart farming, smart drones, etc. However, when exchanging data, wireless communication networks use an open network, allowing unauthorized users to engage in communication that is seriously destructive. Therefore, authentication through a digital signature will be the best solution to tackle such problems. Several digital signatures are contributing to the authentication process in a wireless communication network; however, they are suffering from several problems, including forward security, key escrow, certificate management, revocations, and high computational and communication costs, respectively. Keeping in view the above problems, in this paper we proposed an efficient certificateless forward-secure signature scheme for secure deployments in wireless communication networks. The security analysis of the proposed scheme is carried out using the random oracle model (ROM), which shows that it is unforgeable against type 1 and type 2 adversaries. Moreover, the computational and communication cost analyses are carried out by using major operations, major operations cost in milliseconds, and extra communication bits. The comparative analysis with the existing scheme shows that the proposed scheme reduces the computational cost from 19.23% to 97.54% and the communication overhead from 11.90% to 83.48%, which means that the proposed scheme is efficient, faster, and more secure for communication in the wireless communication network.
面向物联网安全部署的高效无证书前向安全签名方案
作为有线网络的延伸,无线通信网络的使用大大提高了用户在工作和日常生活中的生产力。无线通信网络最引人注目的方面是它克服了有线网络的限制,减少了用于有线维护的费用,并且以更广泛和更灵活的方式分布。将无线通信与物联网(IoT)相结合可以用于多种应用,包括智慧城市,智能交通,智能农业,智能无人机等。然而,在交换数据时,无线通信网络使用开放网络,允许未经授权的用户进行具有严重破坏性的通信。因此,通过数字签名进行身份验证将是解决此类问题的最佳解决方案。在无线通信网络中,几个数字签名对身份验证过程起着重要作用;然而,它们面临着几个问题,分别包括转发安全性、密钥托管、证书管理、撤销以及高昂的计算和通信成本。针对上述问题,本文提出了一种高效的无证书前向安全签名方案,用于无线通信网络的安全部署。使用随机oracle模型(ROM)对所提出的方案进行了安全性分析,结果表明该方案对类型1和类型2的攻击者是不可伪造的。此外,通过主要操作、主要操作的毫秒级成本和额外的通信位进行了计算和通信成本分析。与现有方案的对比分析表明,所提方案将计算成本从19.23%降低到97.54%,通信开销从11.90%降低到83.48%,表明所提方案在无线通信网络中具有高效、快速、安全的特点。
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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