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Distributed Fine-Grained Secure Control of Smart Actuators in Internet of Things

机译:物联网中智能执行器的分布式细粒度安全控制

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摘要

Internet of Things is a new emerging technology that promises a new era of Internet through encompassing seamlessly physical and digital worlds in one single intelligent ecosystem. This goal is achieved by interconnecting a large number of smart objects from the physical word such as smartphones, sensors, robots, connected cars, etc., to Internet. Nowadays, with the advent of Internet of Things, we need efficient mechanisms to remotely control IoT smart actuators by users and controllers using smartphones and IoT devices. This arises particularly in industrial Cyber-Physical Systems to supervise industrial processes. However, the complex environment of IoT systems makes this task very difficult to achieve regarding the number of connected objects and their resource limitation. In this paper, we tackle the problem of remote secure control of IoT actuators. We propose a distributed lightweight fine-grained access control based on Attribute Based Encryption mechanism and one way hash chain. We conducted security analysis and formal verification using AVISPA. The results demonstrated that our scheme is secure against various attacks. Moreover, the simulation results demonstrated the scalability and the efficiency of our solution, which saves substantially energy consumption and computation costs.
机译:物联网是一项新兴技术,通过将无缝的物理和数字世界包含在一个智能生态系统中,它有望开创互联网的新纪元。通过将大量智能对象从物理单词(例如智能手机,传感器,机器人,联网汽车等)互连到Internet,可以实现此目标。如今,随着物联网的到来,我们需要有效的机制来通过智能手机和IoT设备由用户和控制器远程控制IoT智能执行器。这在监视网络计算机工业过程的工业网络物理系统中尤为明显。然而,物联网系统的复杂环境使得就连接对象的数量及其资源限制而言,这项任务很难实现。在本文中,我们解决了物联网执行器的远程安全控制问题。我们提出了一种基于属性的加密机制和单向哈希链的分布式轻量级细粒度访问控制。我们使用AVISPA进行了安全性分析和形式验证。结果表明,我们的方案可以抵抗各种攻击。此外,仿真结果证明了我们解决方案的可扩展性和效率,从而大大节省了能源消耗和计算成本。

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