Compensation of imperfect channel reciprocity through MMSE prediction for physical-layer confidentiality enhancement

Hao Li, Xianbin Wang, Helen Tang
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引用次数: 4

Abstract

In this paper, we utilize the minimum mean squared error (MMSE) prediction to compensate imperfect channel reciprocity in achieving physical-layer confidentiality enhancement, particularly for our recently developed secure OFDM system with dynamic subcarrier coordinate interleaving [1]. In the proposed method, the transmitter first estimates the correlation coefficient between the forward and backward channel estimates based on historical observations and then uses this correlation coefficient to predict the channel estimate that would be observed by the legitimate receiver. Relying on this predicted channel, the transmitter interleaves the real and imaginary components of a subcarrier symbol when its associated channel phase is larger than a predefined threshold. Improved channel reciprocity is thus established and the frequently updated interleaving pattern can be shared between legitimate users. In contrast, adversaries at a third location are not able to de-interleave the OFDM signals so that communication confidentiality is achieved. Compared with existing imperfect channel reciprocity compensation solutions in physical-layer confidentiality enhancement, the proposed technique requires no additional resource and is not sensitive to the origin of the imperfect channel reciprocity. Simulations are carried out to validate the proposed design.
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利用MMSE预测补偿不完善的信道互易性,增强物理层保密性
在本文中,我们利用最小均方误差(MMSE)预测来补偿不完美的信道互反,以实现物理层机密性增强,特别是我们最近开发的具有动态副载波坐标交错[1]的安全OFDM系统。在该方法中,发射机首先根据历史观测估计前向和后向信道估计之间的相关系数,然后使用该相关系数预测合法接收机将观察到的信道估计。依靠该预测信道,当关联信道相位大于预定义阈值时,发射机将子载波符号的实分量和虚分量交织在一起。从而建立了改进的信道互易性,并且可以在合法用户之间共享频繁更新的交错模式。相反,在第三个位置的对手不能去交错OFDM信号,从而实现通信机密性。与现有物理层保密增强中的不完全信道互易补偿方案相比,该方法不需要额外的资源,并且对不完全信道互易的来源不敏感。仿真验证了所提出的设计。
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