论文标题
大气湍流中Terahertz无线通道上的窃听风险评估
Eavesdropping Risk Evaluation on Terahertz Wireless Channels in Atmospheric Turbulence
论文作者
论文摘要
在Terahertz(THZ)频率运行的无线网络已被提议作为支持不断增加的能力需求的有前途的候选人,这对现有的无线电频率(RF)技术无法满意。另一方面,它可能会充当骨干基础设施,因此可能是窃听攻击的有吸引力的目标。与常规的RF频谱相比,THZ范围内的无线通道由于其远光方向性和较小的信号覆盖范围而不受截距的影响。但是,由于意外散射引起的多径效应,仍然存在窃听的风险。在这项工作中,从物理层的角度研究了对THZ通道传递大气湍流的窃听风险和产生损害的排放。开发了由于湍流,气态吸收和梁发散引起的信号衰减的模型,以预测确定性和概率信号泄漏。根据湍流强度和其他通道特征的变化,得出并分析了THZ通道的保密能力和中断概率。根据最大安全数据传输速率(MSR)和信号泄漏区域,研究了通道性能对窃听器位置的依赖性。提供了THZ通道的设计结果,以最大程度地减少物理层的窃听风险。
Wireless networks operating at terahertz (THz) frequencies have been proposed as a promising candidate to support the ever-increasing capacity demand, which cannot be satisfied with existing radio-frequency (RF) technology. On the other hand, it likely will serve as backbone infrastructure and could therefore be an attractive target for eavesdropping attacks. Compared with regular RF spectrum, wireless channels in the THz range could be less vulnerable to interceptions because of their high beam directionality and small signal coverage. However, a risk for eavesdropping can still exist due to the multipath effects caused by unintended scattering. In this work, an eavesdropping risk for THz channel passing atmospheric turbulences and producing compromising emissions is investigated from a physical layer perspective. A model combining signal attenuation due to turbulence, gaseous absorption and beam divergence, is developed for prediction of deterministic and probabilistic signal leakages. The secrecy capacity and outage probability of the THz channel are derived and analyzed with respect to variations of the turbulence strength and other channels characteristics. The dependence of the channel performance on the eavesdropper's position is investigated with respect to the maximum safe data transmission rate (MSR) and the signal leakage region. Design results for THz channels are provided to minimize an eavesdropping risk at physical layer.