一种基于多载波的多播系统物理层安全方案

Tong Lin, Kai-zhi Huang, W. Luo
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引用次数: 4

摘要

传统的物理层安全方法,如人工噪声,通常要求发送方的天线数量多于接收方的天线数量,这在多播系统中是不实用的。为了解决这一问题,提出了一种基于多载波的多播系统物理层安全方案,该方案利用空间域和频域的优势,形成一个相对虚拟的多天线系统。通过子载波分配,保证了每个子载波信道矩阵中存在零空间,从而增加了人工噪声,保证了通信的安全性。基于Kuhn-Tucher条件,提出了在总功率约束下安全率最大化的最优功率分配方法。仿真结果表明,该方案不受发送端天线数量的限制,比一般的功率分配方法提高了2 bit/s/Hz的安全速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A multicarrier-based physical layer security scheme for the multicast systems
Traditional physical layer security methods, such as artificial noise, commonly require that the sender has more antennas than that of the receivers, which is not practical in the multicasting system. To solve this problem, a multicarrier-based physical layer security scheme for the multicast systems is proposed, which takes the advantage of both space and frequency domain to form a relatively virtual multi-antenna system. Through subcarrier allocation the existence of null space in every subcarrier channel matrix is guaranteed, so that the artificial noise can be added to ensure a secure communication. Based on the Kuhn-Tucher condition, an optimal power allocation method is also proposed to maximize the security rates under the restriction of total power. Simulation results indicate that this scheme is unlimited by the amount of the sender antennas, and it improves the security rates by 2 bit/s/Hz than the average power allocation method.
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