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A Novel Physical Layer Encryption Scheme to Counter Eavesdroppers in Wireless Communications

机译:无线通信中针对窃听者的新型物理层加密方案

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Modern wireless communication systems employ wideband modulated RF carriers to communicate the data of interest between the nodes in the network. The security of communications has been conventionally addressed in the data link layers through scrambling and data encryption schemes. These schemes however do not secure the air interface parameters such as modulation scheme and leave them susceptible to eavesdropping and interception by man-in-the-middle platforms. Physical layer security schemes such as directional modulation, DFT S OFDM and RF fingerprinting have been proposed. In this paper, we propose a novel physical layer encryption scheme based on the spectral profile of the intended modulated signal through deliberately introduced constellation distortion to conceal the modulation scheme. The scheme uses a dispersive filter in the modulator with unique group delay profiles unknown to the eavesdropper. The appropriate inverse filter is employed in the authorized receivers to recover the original modulated basebands for demodulation.
机译:现代无线通信系统采用宽带调制的RF载波在网络中的节点之间传递感兴趣的数据。传统上已经通过加扰和数据加密方案在数据链路层中解决了通信的安全性。然而,这些方案不能确保诸如调制方案之类的空中接口参数,并使它们易于受到中间人平台的监听和拦截。已经提出了诸如方向调制,DFT S OFDM和RF指纹识别之类的物理层安全方案。在本文中,我们通过故意引入的星座失真来掩盖调制方案,从而基于预期调制信号的频谱轮廓,提出了一种新颖的物理层加密方案。该方案在调制器中使用了一个色散滤波器,其窃听者不知道其独特的群时延分布。在授权的接收器中采用适当的逆滤波器来恢复原始的调制基带以进行解调。

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