Ensuring IoT Security with an Architecture Based on a Separation Kernel

Mahieddine Yaker, Chrystel Gaber, G. Grimaud, Jean-Philippe Wary, Julien Iguchi-Cartigny, Xiao Han, Vicente Sanchez-Leighton
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引用次数: 3

Abstract

In recent years, Internet of Things devices(IoT) and Cyber-Physicals Systems(CPS) are ubiquitous and used in many situations (e.g. avionic, vehicles, household devices, smartphones). End-user privacy and security was one of the main concerns of devices designers. Moreover, these systems are becoming more complex and opened to enable industrial to provide different services at the same time on the same device. However, the industrial worries about their data integrity and confidentiality into the devices. Each service provider is in an economic confrontation with others and End-User and service data are a significant resource. In this paper we propose an IoT device architecture based on a small separation kernel and a communication control mechanism to provide a trustworthy environment for each service provider.
基于分离内核的架构确保物联网安全
近年来,物联网设备(IoT)和网络物理系统(CPS)无处不在,并在许多情况下使用(例如航空电子,车辆,家用设备,智能手机)。终端用户的隐私和安全是设备设计者最关心的问题之一。此外,这些系统正变得越来越复杂和开放,使工业能够在同一设备上同时提供不同的服务。然而,工业界担心他们的数据完整性和机密性进入设备。每个服务提供商都处于与其他终端用户和服务数据的经济对抗中,服务数据是重要的资源。在本文中,我们提出了一种基于小分离内核和通信控制机制的物联网设备架构,为每个服务提供商提供一个可信的环境。
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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