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Physical-layer security based on joint scrambling with spatial and frequency resource

机译:基于带空间和频率资源的关节争吵的物理层安全性

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摘要

The projection of the random multi-antenna weighted vector structured with spatial scrambling is of constant modulus on the main channel, Eavesdropper can take the advantage of multi-antenna to intercept private information. To solve this problem, we design a kind of physical-layer secrecy method based on the joint scrambling with spatial and frequency resource. Based on the parallel transmission nature of OFDM, we construct a random multiple antenna weighted vector in the each subcarrier, the projection of which on the main channel is equal to a dynamic reference variable. The legitimate user can correctly demodulate the receive signal by this reference variable obtained from the estimation of the reference subcarrier. Meanwhile, because of the difference between the main channel and eavesdropper channel, eavesdropper can't obtain the useful information. The simulation results show that, when the legitimate users can correctly demodulate the received signal, the eavesdropper can't intercept the private information using whether blind equalization or MUSIC-like method.
机译:具有空间加扰的随机多天线加权矢量的投影在主通道上具有恒定模量,窃听器可以采用多天线以拦截私人信息的优点。为了解决这个问题,我们设计了一种基于与空间和频率资源的关节争吵的物理层保密方法。基于OFDM的并行传输性质,我们在每个子载波中构造一个随机多天线加权矢量,在主信道上的投影等于动态参考变量。合法用户可以通过从参考子载波的估计获得的该参考变量来正确地解调接收信号。同时,由于主沟道和窃听者之间的差异,窃听者无法获得有用的信息。仿真结果表明,当合法用户可以正确地解调接收信号时,窃听器无法使用是否盲均衡或类似音乐方法拦截私人信息。

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