Sarhan Akram Y
Department of Information Technology, College of Computing and Information Technology, University of Jeddah, Jeddah, Saudia Arabia.
PeerJ Comput Sci. 2023 Jul 18;9:e1458. doi: 10.7717/peerj-cs.1458. eCollection 2023.
The aim of this article is to identify a range of changes and challenges that present-day technologies often present to contemporary societies, particularly in the context of smart city logistics, especially during crises. For example, the long-term consequences of the COVID-19 pandemic, such as life losses, economic damages, and privacy and security violations, demonstrate the extent to which the existing designs and deployments of technological means are inadequate. The article proposes a privacy-preserving, decentralized, secure protocol to safeguard individual boundaries and supply governments and public health organizations with cost-effective information, particularly regarding vaccination. The contribution of this article is threefold: (i) conducting a systematic review of most of the privacy-preserving apps and their protocols created during pandemics, and we found that most apps pose security and privacy violations. (ii) Proposing an agent-based, decentralized private set intersection (PSI) protocol for securely sharing individual digital personal and health passport information. The proposed scheme is called secure mobile digital passport agent (SMDPA). (iii) Providing a simulation measurement of the proposed protocol to assess performance. The performance result proves that SMDPA is a practical solution and better than the proposed active data bundles using secure multi-party computation (ADB-SMC), as the average CPU load for SMDPA is approximately 775 milliseconds (ms) compared to about 900 ms for ADB-SMC.
本文旨在确定当今技术经常给当代社会带来的一系列变化和挑战,特别是在智能城市物流背景下,尤其是在危机期间。例如,新冠疫情的长期后果,如生命损失、经济损害以及隐私和安全侵犯,表明现有技术手段的设计和部署存在不足。本文提出了一种保护隐私、去中心化、安全的协议,以维护个人边界,并为政府和公共卫生组织提供具有成本效益的信息,特别是关于疫苗接种的信息。本文的贡献有三个方面:(i)对疫情期间创建的大多数保护隐私的应用程序及其协议进行了系统综述,我们发现大多数应用程序存在安全和隐私侵犯问题。(ii)提出了一种基于代理的去中心化私有集交集(PSI)协议,用于安全共享个人数字身份和健康护照信息。所提出的方案称为安全移动数字护照代理(SMDPA)。(iii)对所提出的协议进行了模拟测量,以评估其性能。性能结果证明,SMDPA是一种实用的解决方案,优于使用安全多方计算(ADB-SMC)提出的主动数据包,因为SMDPA的平均CPU负载约为775毫秒(ms),而ADB-SMC约为900毫秒。