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Achieving secure communication through random phase rotation technique

机译:通过随机相位旋转技术实现安全通信

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To achieve secure communication between legitimate users, a physical layer encryption scheme based on random rotation of the modulated symbol is proposed. By exploiting the random behavior and the reciprocity property of the wireless channel, the channel state information (CSI) shared between transmitter and legitimate receivers is used as a initial seed to generate chaotic sequence. The transmitter uses the chaotic sequence to rotate the modulated symbol to enhance communication security and to reduce eavesdroppers' ability to demodulated symbols correctly. Due to the fact that the eavesdropper does not posses any information about the legitimate channel because the channel response is unique to the location of the transmitter and receiver as well as the environment, the receiver is able to demodulate the random rotated symbols correctly while the eavesdroppers demodulate them erroneously. Simulation results show that bit-error-rate (BER) of the legal user matches theoretical results perfectly while the eavesdroppers' BER stays around 0.5, which means that the proposed scheme keeps data transmission under security.
机译:为了实现合法用户之间的安全通信,提出了一种基于调制符号的随机旋转的物理层加密方案。通过利用无线信道的随机行为和互惠属性,在发射机和合法接收机之间共享的信道状态信息(CSI)被用作初始种子,以生成混沌序列。发送器使用混沌序列旋转已调制符号,以增强通信安全性并降低窃听者正确解调符号的能力。由于信道响应对于发射器和接收器的位置以及环境是唯一的,因此窃听器不会提供有关合法信道的任何信息,因此,在窃听器的接收器能够正确解调随机旋转的符号错误地解调它们。仿真结果表明,合法用户的误码率与理论结果完全吻合,窃听者的误码率保持在0.5左右,这意味着该方案可以保证数据传输的安全性。

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