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Physical Layer Security in Frequency-Domain Time-Reversal SISO OFDM Communication

机译:时域倒置SISO OFDM通信中的物理层安全性

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A frequency domain (FD) time-reversal (TR) pre-coder is proposed to perform physical layer security (PLS) in single-input single-output (SISO) system using orthogonal frequency-division multiplexing (OFDM). To maximize the secrecy of the communication, the design of an artificial noise (AN) signal well-suited to the proposed FD TR-based OFDM SISO system is derived. This new scheme guarantees the secrecy of a communication toward a legitimate user when the channel state information (CSI) of a potential eavesdropper is not known. In particular, we derive an AN signal that does not corrupt the data transmission to the legitimate receiver but degrades the decoding performance of the eavesdropper. A closed-form approximation of the AN energy to inject is defined in order to maximize the secrecy rate (SR) of the communication. Simulation results are presented to demonstrate the security performance of the proposed secure FD TR SISO OFDM system.
机译:提出了一种频域(FD)时反转(TR)预编码器,以在使用正交频分复用(OFDM)的单输入单输出(SISO)系统中执行物理层安全(PLS)。为了最大程度地提高通信的保密性,推导了一种非常适合所提出的基于FD TR的OFDM SISO系统的人工噪声(AN)信号的设计。当不知道潜在窃听者的信道状态信息(CSI)时,此新方案可以保证向合法用户的通信的保密性。特别是,我们得出一个AN信号,它不会破坏到合法接收器的数据传输,但会降低窃听者的解码性能。为了使通信的保密率(SR)最大化,定义了要注入的AN能量的闭合形式的近似值。仿真结果表明了所提出的安全FD TR SISO OFDM系统的安全性能。

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