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Demo abstract: A practical secret communication system by perturbing focused phases among distributed transmitters

机译:演示摘要:一种实用的秘密通信系统,通过扰动分布式发射机之间的聚焦相位

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摘要

Ensuring confidentiality of communication is fundamental to securing the operation of a wireless system, where eavesdropping is easily facilitated by the broadcast nature of the wireless medium. By applying distributed phase alignment among distributed transmitters, we show that a new approach for assuring physical layer secrecy, without requiring any knowledge about the eavesdropper or injecting any additional cover noise, is possible if the transmitters frequently perturb their phases around the proper alignment phase while transmitting messages. This approach is readily applied to amplitude-based modulation schemes, such as PAM or QAM. We present our secrecy mechanisms, prove several important secrecy properties, and develop a practical secret communication system design. We further implement and deploy a prototype that consists of 16 distributed transmitters using USRP N210s in a 20 × 20 × 3 m3area. By sending more than 160M bits over our system to the receiver, depending on system parameter settings, we measure that the eavesdroppers failed to decode 30% — 60% of the bits cross multiple locations while the intended receiver has an estimated bit error ratio of 3 × 10−6.
机译:确保通信的机密性是确保无线系统运行的基础,在无线系统中,无线介质的广播性质很容易促进窃听。通过在分布式发射器之间应用分布式相位对准,我们表明,如果发射器经常在适当的对准相位附近扰动其相位,而无需对窃听者有任何了解或注入任何额外的覆盖噪声的情况下,一种确保物理层保密性的新方法是可行的。传输消息。这种方法很容易应用于基于幅度的调制方案,例如PAM或QAM。我们介绍了我们的保密机制,证明了几个重要的保密属性,并开发了一种实用的秘密通信系统设计。我们进一步在20×20×3 m中实施和部署一个原型,该原型由使用USRP N210的16个分布式发射机组成。 3 区域。通过根据系统参数设置在我们的系统上向接收器发送超过1.6亿比特,我们测量到窃听者未能解码30%-60%的比特跨多个位置,而预期的接收器具有估计的误码率的3×10 -6

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