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RAV: Relay Aided Vectorized Secure Transmission in Physical Layer Security for Internet of Things Under Active Attacks

机译:RAV:主动攻击下物联网物理层安全中的中继辅助矢量化安全传输

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摘要

Internet of Things (IoT) security becomes of great importance, as IoT is the foundation for many emerging services. To safeguard IoT security, cryptosystems at upper layer relying on sophisticated key management alone can face many challenges due to the massive deployment of resource constrained machine-type communication (MTC) devices. Physical layer (PHY) security can complement and enhance IoT security, by exploiting the characteristics of the bottom layer. In PHY security, channel state information (CSI) estimated through reverse pilot training is essential for the sender to select appropriate beamforming/precoder, which however is also vulnerable to adversaries. An adversary can actively launch pilot contamination attacks to affect the channel estimation and improve its signal reception quality. In this paper, we propose a relay-aided vectorized (RAV) secure transmission scheme, to safeguard the downlink communication in IoT networks under potential pilot contamination attacks. The proposed scheme does not distinguish the pilot sequences sent from an adversary and the receiver; and the sender utilizes what it receives to estimate the CSI for beamforming/precoder design. Then, a set of data symbols are presuperposed using a random complex matrix to form signal vectors to send. Through cooperation with a relay, the signal vectors can be recovered by the intended receiver whereas the adversary or the relay cannot, as proved through security analysis. The simulation results also demonstrate that the bit error rate (BER) of the adversary is 0.5 regardless of its channel quality, indicating perfect secrecy is achieved.
机译:物联网(IoT)安全变得非常重要,因为IoT是许多新兴服务的基础。为了保护物联网安全,由于大规模部署资源受限的机器类型通信(MTC)设备,仅依靠复杂密钥管理的上层加密系统可能会面临许多挑战。物理层(PHY)安全性可以通过利用底层的特性来补充和增强IoT安全性。在PHY安全性中,通过反向导频训练估算的信道状态信息(CSI)对于发送方选择适当的波束成形/预编码器至关重要,但是它也容易受到对手的攻击。对手可以主动发动飞行员污染攻击,以影响信道估计并提高其信号接收质量。在本文中,我们提出了一种中继辅助矢量化(RAV)安全传输方案,以保护IoT网络中潜在的飞行员污染攻击下的下行链路通信。提出的方案没有区分对手和接收者发送的导频序列。发送者利用接收到的信息来估计CSI以进行波束成形/预编码器设计。然后,使用随机复数矩阵对一组数据符号进行预叠加,以形成要发送的信号向量。通过与中继的协作,可以通过预期的接收方恢复信号向量,而对手或中继无法恢复,正如通过安全性分析所证明的那样。仿真结果还表明,无论其信道质量如何,对手的误码率(BER)均为0.5,表明实现了完美的保密性。

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