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首页> 外文期刊>IEEE Transactions on Communications >Hybrid Precoding Design for Secure Generalized Spatial Modulation With Finite-Alphabet Inputs
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Hybrid Precoding Design for Secure Generalized Spatial Modulation With Finite-Alphabet Inputs

机译:具有有限字母输入的安全广义空间调制的混合预编码设计

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Technically, the security performance of generalized spatial modulation (GenSM) networks can be enhanced by dynamically adjusting the precoder allocated to the legitimate signal as communication channel varies. For this purpose, our paper proposes a secure transmission strategy upon designing both digital and analog precoders for hybrid GenSM systems, where an eavesdropper is taken into account. The concept of the hybrid GenSM system has arose to improve the spatial multiplexing (SMX) gain for remedying the shortcoming of the limited number of radio frequency chains in traditional GenSM systems. However, this may lead to a great deal of security degradation since the SMX gain of the unintended receiver will be also improved. To this end, we develop a secrecy enhancement scheme by devising both analog and digital precoders for hybrid GenSM networks. Specifically, we derive an efficiently closed-form alternative to the original secrecy rate (SR) expression for reducing the excessive computational complexity of the joint optimization problem over the hybrid precoder. Then, by using this alternative as our cost function, an iterative algorithm is proposed. In particular, we elaborately conceive a pair of concave maximization problems in order to optimize the digital and analog precoders, respectively. Our proposed strategy not only utilizes semi-positive definite relaxing technique over the analog precoder but also invokes a lower bound of the alternative to further simplify the optimization over the vectored digital precoder. Subsequently, both the convergence and computational complexity of the proposed alternating iteration algorithm are analyzed. Compared to existing designs, our proposed strategy strikes a compelling role in balancing the SR performance and complexity. Finally, our simulation results confirm the efficiency of the proposed algorithm in terms of the SR performance achieved.
机译:从技术上讲,通过动态地调整分配给合法信号的预编码器随着通信信道的变化而通过动态调整预编码器,可以提高广义空间调制(Gensm)网络的安全性能。为此目的,我们的论文提出了在为混合动力学系统设计的数字和模拟预编码器设计时,提出了一种安全的传输策略,其中考虑了窃听器。混合动力机管理系统的概念已经出现,以改善空间复用(SMX)增益,以便在传统的农业组织系统中进行有限射频链的缺点。然而,这可能导致大量的安全降级,因为未经预期的接收器的SMX增益也会得到改善。为此,我们通过为混合动力机管理机构网络设计模拟和数字预编码器来开发一种保密增强方案。具体而言,我们推出了有效的封闭形式替代原始保密率(SR)表达式,以降低混合预编码器的关节优化问题的过度计算复杂度。然后,通过使用这种替代方案作为我们的成本函数,提出了一种迭代算法。特别是,我们详细构思了一对凹形的最大化问题,以便分别优化数字和模拟预编码器。我们所提出的策略不仅利用了模拟预编码器上的半正面明确放松技术,而且还调用替代方案的下限,以进一步简化矢量化数字预编码器的优化。随后,分析了所提出的交流迭代算法的收敛性和计算复杂性。与现有设计相比,我们所提出的策略在平衡SR性能和复杂性方面令人信服的作用。最后,我们的仿真结果证实了在实现的SR性能方面证实了所提出的算法的效率。

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