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Physical layer security performance analysis of the time reversal transmission system

机译:时间反向传输系统的物理层安全性能分析

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摘要

Thanks to its characteristics of temporal compression and spatial focusing, the time reversal (TR) transmission system has the intrinsic capability of anti-eavesdropping. This study analyses the physical layer security performance of the TR transmission system. The probability density functions and cumulative distribution functions of the signal-to-noise ratio of the legitimate user and eavesdropper are given. On this basis, the theoretical expressions of the ergodic capacities of the legitimate channel and the wiretap channel, and the achievable ergodic secrecy rate are derived. The bit error rates of the legitimate user and eavesdropper for binary phase-shift keying modulation are given too. The correctness of the theoretical derivation is verified by simulation. For the legitimate user, the signal power increases as the number of paths increases, which indicates a higher diversity gain can be obtained, and the inter-symbol interference power decreases as the up-sampling factor increases. So, the signal-to-interference-plus-noise ratio (SINR) of the received signal can be significantly improved by appropriately reducing the spectral efficiency. However, the received signal's SINR of the eavesdropper cannot be promoted obviously. That is to say, compared with the eavesdropper, the legitimate user can achieve a higher rate and a lower BER, so secure transmission can be realised.
机译:由于其时间压缩和空间聚焦的特性,时间反转(TR)传输系统具有抗监听功能。本研究分析了TR传输系统的物理层安全性能。给出了合法用户和窃听者的信噪比的概率密度函数和累积分布函数。在此基础上,推导了合法通道和窃听通道的遍历容量的理论表达式,以及可获得的遍历保密率。还给出了合法用户和用于二进制相移键控调制的窃听者的误码率。通过仿真验证了理论推导的正确性。对于合法用户,信号功率随着路径数量的增加而增加,这表明可以获得更高的分集增益,并且符号间干扰功率随着上采样因子的增加而降低。因此,通过适当降低频谱效率,可以显着提高接收信号的信号干扰加噪声比(SINR)。但是,窃听者的接收信号的SINR不能明显提高。也就是说,与窃听者相比,合法用户可以获得更高的速率和更低的BER,因此可以实现安全的传输。

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