Analog-Inspired Hardware Security: A Low-Energy Solution for IoT Trusted Communications

Analog-Inspired Hardware Security: A Low-Energy Solution for IoT Trusted Communications
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DOI:
10.1109/socc52499.2021.9739611
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发表时间:
2021-09
期刊:
2021 IEEE 34th International System-on-Chip Conference (SOCC)
影响因子:
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通讯作者:
Samuel Ellicott;Michael Kines;W. Khalil;Yu Qi;Abdullah Kurtoglu;H. M. Lavasani
Samuel Ellicott;Michael Kines;W. Khalil;Yu Qi;Abdullah Kurtoglu;H. M. Lavasani
中科院分区:
其他
文献类型:
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作者:
Samuel Ellicott;Michael Kines;W. Khalil;Yu Qi;Abdullah Kurtoglu;H. M. Lavasani

文献摘要

相似文献

随着互联物联网 (IoT) 设备的激增,此类设备之间的可信通信越来越受到关注。尽管研究人员花费了大量资源来应对这一挑战,但大多数解决方案都会给能源受限的物联网设备带来巨大的能源、延迟和复杂性开销。在本文中,我们首先概述了用于将安全和信任功能融入物联网设备的一些技术。然后,我们提出并演示了一种低能耗、低复杂性和低延迟的无线物联网通信创新加密方法。所提出的加密技术将加密集成到无线收发器的射频前端中,并且具有高能效,使其适合实时和能量有限的物联网连接应用。
With the proliferation of connected internet of things (IoT) devices, trusted communications between such de-vices is an increasing concern. While researchers have spent significant resources to address this challenge, most solutions impose significant energy, delay, and complexity overhead on energy-constrained IoT devices. In this paper, we first provide an overview of some of the techniques used to incorporate security and trust features into IoT devices. Then, we propose and demonstrate an innovative encryption approach for wireless IoT communications which is low-energy, low-complexity, and low-latency. The proposed cryptography integrates the encryption into the RF front-end of a wireless transceiver and is energy-efficient, making it suitable for real-time and energy-limited IoT connectivity applications.