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A Hybrid Scheme for Wireless Physical Layer Security Based on Encryption and Channel Pre-compensation

机译:基于加密和信道预补偿的无线物理层安全混合方案

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摘要

In this paper, a hybrid scheme to provide wireless physical layer security based on encryption and wireless channel pre-compensation is presented. The physical layer security is provided by converting the signal constellation into a higher order constellation by using conventional encryption (symmetric key encryption) and then using channel state information (i.e. amplitude and phase variation), which is location specific, to further encrypt the constellation before transmission. Since detection and demodulation are based upon the known signal constellation, which is not known in advance in our case, it becomes difficult for the eavesdropper to determine the original signal constellation. The data intercepted by the eavesdropper is unintelligible due to the combined effect of encryption and pre-compensation. Using bit error rate (BER) as performance metric, it is found that the eavesdropper suffers from high BER as compared to its legitimate counterpart hence providing secure communication. The developed scheme was tested with existing wireless communication standard IEEE 802.11 to show the practical application of the scheme.
机译:本文提出了一种基于加密和无线信道预补偿的提供无线物理层安全性的混合方案。通过使用常规加密(对称密钥加密)将信号星座图转换为高阶星座图,然后使用特定于位置的信道状态信息(即幅度和相位变化)来进一步加密星座图,从而提供物理层安全性传播。由于检测和解调基于已知信号星座图,在我们的情况下是事先未知的,因此窃听者很难确定原始信号星座图。由于加密和预补偿的共同作用,窃听者截获的数据难以理解。使用误码率(BER)作为性能指标,发现窃听者与其合法的窃听者相比具有较高的BER,因此提供了安全的通信。所开发的方案已通过现有无线通信标准IEEE 802.11进行了测试,以显示该方案的实际应用。

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