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Waveform Design for Secure SISO Transmissions and Multicasting

机译:安全SISO传输和组播的波形设计

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摘要

Wireless physical-layer security is an emerging field of research aiming at preventing eavesdropping in an open wireless medium. In this paper, we propose a novel waveform design approach to minimize the likelihood that a message transmitted between trusted single-antenna nodes is intercepted by an eavesdropper. In particular, with knowledge first of the eavesdropper's channel state information (CSI), we find the optimum waveform and transmit energy that minimize the signal-to-interference-plus-noise ratio (SINR) at the output of the eavesdropper's maximum-SINR linear filter, while at the same time provide the intended receiver with a required pre-specified SINR at the output of its own max-SINR filter. Next, if prior knowledge of the eavesdropper's CSI is unavailable, we design a waveform that maximizes the amount of energy available for generating disturbance to eavesdroppers, termed artificial noise (AN), while the SINR of the intended receiver is maintained at the pre-specified level. The extensions of the secure waveform design problem to multiple intended receivers are also investigated and semidefinite relaxation (SDR) -an approximation technique based on convex optimization- is utilized to solve the arising NP-hard design problems. Extensive simulation studies confirm our analytical performance predictions and illustrate the benefits of the designed waveforms on securing single-input single-output (SISO) transmissions and multicasting.
机译:无线物理层安全性是旨在防止在开放无线介质中进行窃听的新兴研究领域。在本文中,我们提出了一种新颖的波形设计方法,以最大程度地减少窃听者在受信任的单天线节点之间传输的消息的可能性。特别是,首先了解了窃听者的信道状态信息(CSI),我们便找到了最佳波形和发射能量,从而使窃听者的最大SINR线性输出的信噪比(SINR)最小化滤波器,同时在其自己的max-SINR滤波器的输出端为目标接收机提供所需的预定SINR。接下来,如果无法获得窃听者CSI的先验知识,我们将设计一个波形,该波形最大程度地增加可用于对窃听者产生干扰的能量,称为人工噪声(AN),同时将预期接收器的SINR保持在预先指定的水平水平。还研究了安全波形设计问题对多个预期接收器的扩展,并利用半定松弛(SDR)(一种基于凸优化的近似技术)来解决出现的NP硬设计问题。大量的仿真研究证实了我们的分析性能预测,并说明了设计波形对确保单输入单输出(SISO)传输和多播的好处。

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