Multi-beam Symbol-Level Precoding in Directional Modulation Based on Frequency Diverse Array

B. Qiu, Ling Wang, Jian Xie, Zhaolin Zhang, Yuexian Wang
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引用次数: 2

Abstract

In this paper, an efficient multi-beam transmission scheme that uses symbol-level precoding based on frequency diverse array (FDA) is proposed to enhance the physical layer security (PLS). Unlike the usual maximization of secrecy rate, we assume that the position information of passive eavesdropper (Eve) is not available at transmitter, which is a more realistic assumption. We use a minimum transmission message power criterion to design the precoder, subject to constraint on received signals at symbol level for per legitimate user (LU). This guarantees the valid reception of LUs to obtain the corresponding symbols under transmission messages power minimization. Then, after accurate calculation of the transmission message power, the remaining power can be allocated to artificial noise (AN), which deteriorates the quality of received signals at other regions. Numerical simulations show the validity and effectiveness of the proposed scheme.
分频阵列定向调制中的多波束符号级预编码
为了提高物理层安全性,提出了一种基于分频阵列(FDA)的符号级预编码的高效多波束传输方案。与通常的保密率最大化不同,我们假设被动窃听者(Eve)的位置信息在发射机处是不可获得的,这是一个更现实的假设。我们使用最小传输消息功率标准来设计预编码器,该标准受每个合法用户(LU)在符号级接收信号的约束。这保证了在发送报文功率最小的情况下,逻辑单元能够有效接收到相应的符号。然后,在精确计算发送报文功率后,将剩余功率分配给人工噪声(AN),从而降低其他区域接收信号的质量。数值仿真结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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