物联网系统的安全性:设计挑战与机遇

T. Xu, James Bradley Wendt, M. Potkonjak
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引用次数: 322

摘要

计算机辅助设计(CAD)在寻求促进新的设计革命的过程中,再次处于改变其范围的边缘。根据历史和最近的技术和应用趋势,人们可以确定几个新兴的研究和发展方向,其中CAD方法和技术可能会产生重大影响。其中,由于有可能从根本上改变日常生活以及科学和工程系统的设计和操作方式,物联网(IoT)脱颖而出。物联网也构成了一个充满概念和技术挑战的非凡系统。例如,大大减少可接受面积和能量指标的定量界限需要在设计和优化技术上取得定性突破。要广泛实现许多物联网愿景,最苛刻的要求很可能是安全性。物联网安全至少在四个方面具有异常广泛的范围。就安全范围而言,它包括很少涉及的任务,如可信感知、计算、通信、隐私和数字遗忘。它还要求采用新的、更好的技术来保护硬件、软件和数据,考虑到物理访问物联网设备的可能性。传感器和致动器是物联网设备的常见组件,并提出了几个独特的安全挑战,包括物理信号和致动事件的完整性。最后,在处理收集的数据期间,可以设想许多语义攻击。我们的战略目标是推动物联网CAD安全技术的发展。我们首先简要介绍物联网的挑战和机遇,重点是安全问题。接下来,我们将讨论基于硬件的物联网安全方法的潜力。最后,我们总结了几个案例研究,主张在几种物联网安全协议中使用稳定的puf和数字puf。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Security of IoT systems: Design challenges and opportunities
Computer-aided design (CAD), in its quest to facilitate new design revolutions, is again on the brink of changing its scope. Following both historical and recent technological and application trends, one can identify several emerging research and development directions in which CAD approaches and techniques may have major impacts. Among them, due to the potential to fundamentally alter everyday life as well as how science and engineering systems are designed and operated, the Internet of Things (IoT) stands out. IoT also poses an extraordinary system replete with conceptual and technical challenges. For instance, greatly reduced quantitative bounds on acceptable area and energy metrics require qualitative breakthroughs in design and optimization techniques. Most likely the most demanding of requirements for the widespread realization of many IoT visions is security. IoT security has an exceptionally wide scope in at least four dimensions. In terms of security scope it includes rarely addressed tasks such as trusted sensing, computation, communication, privacy, and digital forgetting. It also asks for new and better techniques for the protection of hardware, software, and data that considers the possibility of physical access to IoT devices. Sensors and actuators are common components of IoT devices and pose several unique security challenges including the integrity of physical signals and actuating events. Finally, during processing of collected data, one can envision many semantic attacks. Our strategic objective is to provide an impetus for the development of IoT CAD security techniques. We start by presenting a brief survey of IoT challenges and opportunities with an emphasis on security issues. Next, we discuss the potential of hardware-based IoT security approaches. Finally, we conclude with several case studies that advocate the use of stable PUFs and digital PPUFs for several IoT security protocols.
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