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Robust Synthesis Algorithm for Directional Modulation Signal with Array Manifold Vectors Uncertainty

机译:具有阵列歧管矢量的方向调制信号的鲁棒合成算法不确定性

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Directional modulation (DM) has become a new research hotspot of physical layer security (PLS) communication at the transmitter side. In this paper, we propose a robust synthesis algorithm for DM signal under the condition of the array manifold vectors perturbation. This algorithm optimizes the constraints of sidelobe level and Euclidean distance of constellation points by considering the worst case performance of array manifold vectors. Furthermore, we also design an active constellation extension (ACE) method to relax the equality constraint of desired modulation symbols into a robust inequality constraint at the desired direction. These constraints can be reformulated in a convex form with l2 and l∞ regularization, which are computationally tractable. Simulation results show better performance of the proposed robust algorithm compared with the benchmark synthesis algorithms in the presence of array manifold vectors uncertainty.
机译:定向调制(DM)已成为发射器侧的物理层安全性(PLS)通信的新研究热点。在本文中,我们在阵列歧管矢量扰动的条件下提出了一种用于DM信号的鲁棒合成算法。该算法通过考虑阵列歧管矢量的最坏情况性能,优化侧链级和星座点的欧几里德距离的约束。此外,我们还设计了一种有源星座扩展(ACE)方法,以将所需调制符号的平等约束放宽到所需方向上的稳健不等式约束中。这些约束可以用凸形形式重新格式化,其中L2和L∞正则化,这些规则是计算上的易行的。仿真结果表明,在存在阵列歧管矢量不确定的情况下,所提出的稳健算法的性能更好地进行了稳健的算法。

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