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A Lightweight Secure and Resilient Transmission Scheme for the Internet of Things in the Presence of a Hostile Jammer

机译:在存在敌对干扰器的情况下,用于敌对的东西的轻质安全和弹性传输方案

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摘要

In this article, we propose a lightweight security scheme for ensuring both information confidentiality and transmission resiliency in the Internet-of-Things (IoT) communication. A single-antenna transmitter communicates with a half-duplex single-antenna receiver in the presence of a sophisticated multiple-antenna-aided passive eavesdropper and a multiple-antenna-assisted hostile jammer (HJ). A low-complexity artificial noise (AN) injection scheme is proposed for drowning out the eavesdropper. Furthermore, for enhancing the resilience against HJ attacks, the legitimate nodes exploit their own local observations of the wireless channel as the source of randomness to agree on shared secret keys. The secret key is utilized for the frequency hopping (FH) sequence of the proposed communication system. We then proceed to derive a new closed-form expression for the achievable secret key rate (SKR) and the ergodic secrecy rate (ESR) for characterizing the secrecy benefits of our proposed scheme, in terms of both information secrecy and transmission resiliency. Moreover, the optimal power sharing between the AN and the message signal is investigated with the objective of enhancing the secrecy rate. Finally, through extensive simulations, we demonstrate that our proposed system model outperforms the state-of-the-art transmission schemes in terms of secrecy and resiliency. Several numerical examples and discussions are also provided to offer further engineering insights.
机译:在本文中,我们提出了一种轻量级安全方案,用于确保信息的信息机密性和传输弹性(IOT)通信。单天线发射机在复杂的多天线辅助被动窃听器和多天线辅助敌对干扰器(HJ)的情况下与半双工单天线接收器通信。提出了一种低复杂性的人工噪声(AN)注射方案,用于淹没窃听器。此外,为了提高对HJ攻击的恢复力,合法节点利用他们自己的本地观察无线信道作为随机性的源,以同意共享密钥。秘密密钥用于所提出的通信系统的跳频(FH)序列。然后,我们继续为可实现的秘密密钥率(SKR)和ergodic保密率(ESR)导出新的闭合表达式,以表征我们所提出的计划的保密利益,就信息保密和传输弹性而言。此外,通过提高保密率的目的来研究AN和消息信号之间的最佳功率共享。最后,通过广泛的模拟,我们证明了我们所提出的系统模型在保密和弹性方面优于最先进的传输方案。还提供了几个数值示例和讨论,以提供进一步的工程洞察力。

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