In this paper, we investigate the physical layer security over the Alternate Rician Shadowed fading channel, which is a novel channel model for body-centric wireless links and land mobile satellite. We derive exact closed-form expressions for the average secrecy capacity (ASC), secrecy outage probability (SOP), and probability of non-zero secrecy capacity (PNZ) for two cases: (i) m is a positive real number and (ii) m is a positive integer number, where m describes the level of fluctuation of the line-of-sight component. In the first case, SOP is derived in terms of the Meijer's G-function, while ASC and PNZ are derived in terms of the multivariate Fox's H-function. In the second case, ASC is derived in terms of the Meijer's G-function, while SOP and PNZ are derived in terms of elementary functions. In addition, we derive the asymptotic ASC, SOP and PNZ expressions which all match well the exact ones at high values of signal-to-noise ratio, respectively. The capacity slope of asymptotic ASC and the secrecy diversity order of asymptotic SOP have been derived for providing more physical insights. Finally, the accuracy of our derived expressions is validated by Monte-Carlo simulations.
翻译:在本文中,我们调查了替代Rician暗影淡化通道的物理层安全性,该通道是身体中心无线连接和地面移动卫星的新渠道模式。我们从平均保密能力(ASC)、保密中断概率(SOP)和非零保密能力(PNZ)的两个案例中得出了精确的封闭式表达方式:(一) m是一个正实际数字,和(二) m是一个正整数,其中 m 描述了视线组件的波动水平。在第一种情况下,SOP是Meijer G功能的新型渠道,而ASC和PNZ则是多变型福克斯功能(H功能)的衍生物。在第二种情况下,ASC以Meijer G功能(G功能)和非零保密能力(PNZ)的概率(PNZ)的精确封闭式表达方式产生。而SOP和PNZ是基本功能的正数。此外,我们得出了无症状ASC、SOP和PNZ的表达方式,所有这些表达方式都与信号到感知度高值的精确度相吻合,分别是作为Smpalimalimalalalalal 的精确度,作为我们测测测定的精确度。