摘要:安全至上,物联网公钥加密框架

Hossein Shafagh, Anwar Hithnawi
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引用次数: 19

摘要

在我们周围越来越多的传感器和执行器(通常被称为智能设备)周围,新的互联网服务正在出现。智能设备构成了物联网(IoT)的支柱,通过自动化、便利性和效率,实现了用户体验的替代形式。与此同时,由于互联网连接和智能设备与人类近距离生活空间的交互可能性,新的安全和安全问题也随之出现。因此,安全性是物联网设计的基本要求。为了保持与现有基础设施的互操作性,我们假设一个安全框架兼容标准的基于ip的安全解决方案,但优化以满足物联网生态系统的约束。在这项正在进行的工作中,我们首先确定了可互操作的安全端到端通信的必要组件,同时结合了公钥加密(PKC)。为此,我们处理涉及的计算和通信开销。硬件方面所需的组件是可负担得起的用于加密操作的硬件加速引擎,以及软件方面的报头压缩和持久安全会话。在未来的工作中,我们将专注于将这些组件集成到框架中,并对该框架的早期原型进行评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Poster Abstract: Security Comes First, a Public-key Cryptography Framework for the Internet of Things
Novel Internet services are emerging around an increasing number of sensors and actuators in our surroundings, commonly referred to as smart devices. Smart devices, which form the backbone of the Internet of Things (IoT), enable alternative forms of user experience by means of automation, convenience, and efficiency. At the same time new security and safety issues arise, given the Internet-connectivity and the interaction possibility of smart devices with human's proximate living space. Hence, security is a fundamental requirement of the IoT design. In order to remain interoperable with the existing infrastructure, we postulate a security framework compatible to standard IP-based security solutions, yet optimized to meet the constraints of the IoT ecosystem. In this ongoing work, we first identify necessary components of an interoperable secure End-to-End communication while incorporating Public-key Cryptography (PKC). To this end, we tackle involved computational and communication overheads. The required components on the hardware side are the affordable hardware acceleration engines for cryptographic operations and on the software side header compression and long-lasting secure sessions. In future work, we focus on integration of these components into a framework and the evaluation of an early prototype of this framework.
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