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An efficient anonymous authentication and key agreement scheme with privacy-preserving for smart cities

机译:具有隐私保留智能城市的高效匿名认证和关键协议计划

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Internet of Things devices are responsible for collecting and transmitting data in smart cities, assisting smart cities to release greater potential. As Internet of Things devices are increasingly connected to smart cities, security and privacy have gradually become important issues. Recently, research works on mitigating security challenges of Internet of Things devices in smart cities mainly focused on authentication. However, in most of the existing authentication protocols, the trustworthiness evaluation of Internet of Things devices in smart cities is ignored. Considering the trustworthiness evaluation of Internet of Things devices is an important constituent of data source authentication, in this article, a cloud-aided trustworthiness evaluation mechanism is first designed to improve the credibility of the Internet of Things devices in smart cities. Furthermore, aiming at the problem that the user’s privacy is easy to leak in the process of authentication, an anonymous authentication and key agreement scheme based on non-interactive zero knowledge argument is proposed. The proposed scheme can ensure the privacy preservation and data security of Internet of Things devices in smart cities. The security analysis demonstrates that the proposed scheme is secure under q-SDH problem. The experimental simulation indicates that the performance of the proposal is greatly improved compared with other similar schemes.
机译:事物互联网设备负责在智能城市中收集和传输数据,协助智能城市释放更大的潜力。随着物联网的设备越来越联系到智能城市,安全性和隐私逐渐成为重要问题。最近,研究旨在减轻智能城市内容设备互联网的安全挑战,主要集中在认证。然而,在大多数现有认证协议中,忽略了智能城市内容设备的可信度评估。考虑到物联网的可信度评估设备是数据源认证的重要组成部分,在本文中,首先旨在提高智能城市中设备互联网的可信度。此外,针对用户隐私在认证过程中易于泄漏的问题,提出了一种基于非交互式零知识参数的匿名认证和关键协议方案。拟议的计划可以确保智能城市中的东西设备互联网的隐私保存和数据安全性。安全性分析表明,在Q-SDH问题下,所提出的方案是安全的。实验模拟表明,与其他类似方案相比,该提案的性能大大提高。

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