Though visible light communication (VLC) systems are contained to a given room, ensuring their security amongst users in a room is essential. In this paper, the design of artificial noise (AN) to enhance physical layer security in VLC systems is studied in the context of input signals with no explicit amplitude constraint (such as multicarrier systems). In such systems, clipping is needed to constrain the input signals within the limited linear ranges of the LEDs. However, this clipping process gives rise to non-linear clipping distortion, which must be incorporated into the AN design. To facilitate the solution of this problem, a sub-optimal design approach is presented using the Charnes-Cooper transformation and the convex-concave procedure (CCP). Numerical results show that the clipping distortion significantly reduces the secrecy level, and using AN is advantageous over the no-AN scheme in improving the secrecy performance.
翻译:虽然可见光通信(VLC)系统包含在特定房间,但确保室内用户的安全至关重要。本文在无明显振幅限制(如多载器系统)输入信号的背景下研究加强VLC系统物理层安全的人造噪音(AN)的设计。在这种系统中,需要剪切来限制LED有限线范围内的输入信号。然而,这种剪切过程导致非线性剪切扭曲,必须将其纳入AN设计中。为便利解决这一问题,使用Charnes-Cooper转换和Convex-concave 程序(CP)提出次最佳设计方法。数字结果显示,剪切扭曲大大降低了保密水平,使用AN在改进保密性能方面优于无线性能计划。