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Novel Beamforming Approach for Secure Communication in UDN to Maximize Secrecy Rate and Fairness Security Assessment

机译:UDN中用于安全通信的新型波束成形方法可最大程度地提高保密率和公平性安全评估

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摘要

With an unprecedented amount of sensitive data and private information generated by mobile devices, security becomes critical for the emerging ultradense network. The conventional approach of encryption is not suitable to provide desired level of security as a result of increased scalability. Thus, physical layer protection is stressed to ensure secure transmission to users in dense environment. In this paper, we examine the security challenges of high speed users for ultradense network under dense picocells deployment. Initially, we consider a dense condition where users are randomly distributed within the picocell. Targeting the problem of security for vehicular users, we propose a beam broadening (BB) and beam merging (BM) techniques that ensure reliable transmission between source and destination. We prove the effectiveness of proposed approach through mathematical and simulation analysis that guarantees high QoS and secure communication. Based on the above formulations, we examine the reliability and potential capability of BB and BM with the measurement of fairness security assessment (FSA). Numerical results demonstrate that BM and BB can achieve higher value of secrecy rate and FSA, in comparison to conventional beamforming. To end this, the complexity analysis is performed in terms of beam generations as a function of speed of user.
机译:移动设备生成的敏感数据和私人信息数量空前,安全性对于新兴的超密集网络至关重要。由于增加的可伸缩性,传统的加密方法不适合提供所需的安全级别。因此,强调物理层保护以确保向密集环境中的用户安全传输。在本文中,我们研究了在微微小区密集部署下高速用户对超密集网络的安全挑战。最初,我们考虑用户在微微小区内随机分布的密集条件。针对车辆用户的安全性问题,我们提出了一种波束加宽(BB)和波束合并(BM)技术,以确保源与目的地之间的可靠传输。我们通过数学和仿真分析证明了所提方法的有效性,该方法可确保高QoS和安全通信。基于以上公式,我们通过公平性安全评估(FSA)的方法来检验BB和BM的可靠性和潜在能力。数值结果表明,与常规波束成形相比,BM和BB可以获得更高的保密率和FSA值。为此,根据光束生成与用户速度的函数来执行复杂度分析。

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