论文标题

MU-MIMO窃听通道的关节预编码和人造噪声设计

Joint Precoding and Artificial Noise Design for MU-MIMO Wiretap Channels

论文作者

Choi, Eunsung, Oh, Mintaek, Choi, Jinseok, Park, Jeonghun, Lee, Namyoon, Al-Dhahir, Naofal

论文摘要

安全编码与人造噪声叠加(AN)是一种有前途的传输技术,可以利用无线介质的叠加性质来提高安全性。但是,在下行链路多用户多输入多输出(MU-MIMO)窃听通道中,找到共同最佳的预编码和结构非常具有挑战性。最大化保密率的主要挑战是速率函数的非跨性别性和不平滑度。传统上,已经采用了一个交替的优化框架,该框架已经采用了波束形成向量和协方差矩阵。然而,这种交替的方法在最大化保密率方面存在局限性。在本文中,我们提出了一种新颖的安全编码算法,该算法共同且同时优化了梁和协方差矩阵,以最大程度地提高发射机的掌声或部分通道知识,以最大程度地提高保密速率。为此,我们首先在平滑函数中建立了近似的保密率。然后,我们以非线性特征值问题(NEP)的形式得出一阶最佳条件。我们提出了一种计算有效的算法,以识别NEP的主要特征向量作为安全预编码的次优溶液。模拟表明,与现有的安全预码方法相比,所提出的方法显着提高了保密率。

Secure precoding superimposed with artificial noise (AN) is a promising transmission technique to improve security by harnessing the superposition nature of the wireless medium. However, finding a jointly optimal precoding and AN structure is very challenging in downlink multi-user multiple-input multiple-output (MU-MIMO) wiretap channels with multiple eavesdroppers. The major challenge in maximizing the secrecy rate arises from the non-convexity and non-smoothness of the rate function. Traditionally, an alternating optimization framework that identifies beamforming vectors and AN covariance matrix has been adopted; yet this alternating approach has limitations in maximizing the secrecy rate. In this paper, we put forth a novel secure precoding algorithm that jointly and simultaneously optimizes the beams and AN covariance matrix for maximizing the secrecy rate when a transmitter has either perfect or partial channel knowledge of eavesdroppers. To this end, we first establish an approximate secrecy rate in a smooth function. Then, we derive the first-order optimality condition in the form of the nonlinear eigenvalue problem (NEP). We present a computationally efficient algorithm to identify the principal eigenvector of the NEP as a suboptimal solution for secure precoding. Simulations demonstrate that the proposed methods improve secrecy rate significantly compared to the existing secure precoding methods.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源