Secure Satellite-Terrestrial Transmission via Hybrid Analog-Digital Beamforming

Qiang Song, Shengiie Zhao, Qingiiang Shi
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引用次数: 7

Abstract

This paper deals with the physical layer security (PLS) of fifth generation (5G) cellular system operating at millimeter wave (mmWave) frequency in Satellite-Terrestrial network. By employing hybrid analog-digital precoder at both base station (BS) and satellite, we propose a realistic multicast Satellite-Terrestrial scheme, and study a constrained optimization problem to maximize the achievable secrecy rate (ASR) of the cellular user under the constraints of transmit power, constant modules and the signal-to-interference-plus-noise ratio (SINR) threshold of fixed satellite service. Due to the nonlinear coupling of the analog precoder and digital precoder, the problem is nonconvex and hard to solve. We reduce the optimization problem into a sequence of subproblems, each of which leads to a simple solution, by using the penalty dual decomposition (PDD) framework. Numerical results validate the effectiveness of the proposed algorithm.
通过混合模拟-数字波束形成的安全卫星-地面传输
本文研究了卫星-地面网络中工作在毫米波(mmWave)频率的第五代(5G)蜂窝系统的物理层安全问题。通过在基站和卫星上使用混合模数预编码器,提出了一种现实的卫星-地面组播方案,并研究了在发射功率、模块常数和卫星固定业务信噪比阈值约束下蜂窝用户可实现保密率(ASR)最大化的约束优化问题。由于模拟预编码器和数字预编码器的非线性耦合,该问题是非凸的,难以解决。我们使用惩罚对偶分解(PDD)框架将优化问题简化为一个子问题序列,每个子问题都有一个简单的解。数值结果验证了该算法的有效性。
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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