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Secure Transmission Design of Millimeter-Wave Wiretap Channel with Guard Zone and Artificial Noise

机译:具有保护区和人为噪声的毫米波窃听通道的安全传输设计

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As one of the key technologies of the fifth generation communication, millimeter wave has abundant available bandwidth, which can meet the explosive growth of mobile data demand. In this paper, we study the problem of secure communication in a millimeter wave wiretap network. Two transmission protocols are designed to achieve the secure transmission in a sector zone. We give a comprehensive investigation of secrecy performance by analyzing each protocol in terms of secrecy outage probability (SOP), connection outage probability (COP) and secrecy throughput. Particularly, for the secrecy guard zone protocol, we analyze the influence of transmit power on secrecy performance and the results demonstrate that it is very important to set transmit power properly. For the secrecy guard zone protocol with artificial noise, in addition to analyzing the influence of transmit power on each performance metric, we also analyze the effect of transmit power allocation factor on the secrecy throughput, the results reveal that the power allocation of the AN and the information signal need to be properly set for increasing the secrecy throughput. Moreover, the influence of different millimeter wave frequency on the performance metric is also analyzed. Finally numerical results are provided to verify our theoretical analysis.
机译:毫米波作为第五代通信的关键技术之一,具有丰富的可用带宽,可以满足移动数据需求的爆炸性增长。在本文中,我们研究了毫米波窃听网络中的安全通信问题。设计了两种传输协议以实现扇区区域中的安全传输。通过对每个协议的保密中断概率(SOP),连接中断概率(COP)和保密吞吐量进行分析,我们对保密性能进行了全面的调查。特别是,对于保密保护区协议,我们分析了发射功率对保密性能的影响,结果表明正确设置发射功率非常重要。对于带有人工噪声的保密保护区协议,除了分析发射功率对每个性能指标的影响外,还分析了发射功率分配因子对保密吞吐量的影响,结果表明,AN和需要适当设置信息信号以增加保密吞吐量。此外,还分析了不同毫米波频率对性能指标的影响。最后提供数值结果以验证我们的理论分析。

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