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Secrecy performance of terahertz wireless links in rain and snow

机译:Secrecy performance of terahertz wireless links in rain and snow

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摘要

Wireless communication technique operating at terahertz (THz) frequencies is regarded as the mostpotential candidate for future wireless networks due to its wider frequency bandwidth and higherdirectionality when compared with that employing radio frequency (RF) and millimeter waves(mmWaves). It has been proved that the high directionality owned by THz wireless links could helpto reduce the possibility of eavesdropping attacks at physical layer. However, for outdoor applicationsin adverse weathers (such as water fog, dust fog, rain and snow), scattering and absorption effectssuffered by a THz link due to weather particles and gaseous molecules could degrade its secrecyperformance seriously. In this work, we present theoretical investigations on physical layer securityof a point-to-point THz link in rain and snow with a potential eavesdropper locating outside of thelegitimate link path. Signal degradation due to rain/snow, gaseous attenuation and beam divergenceare included in a theoretical model to estimate the link performance. Secrecy capacity of the link withcarriers at 140, 220 and 340 GHz is calculated and compared. We find that the rain/snow intensity,carrier frequency and receiver sensitivity could affect the secrecy performance and their influence oninsecure region and maximum safe data transmission rate is discussed and summarized.

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