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首页> 外文期刊>Wireless Communications Letters, IEEE >Secrecy Performance for Finite-Alphabet Inputs Over Fluctuating Two-Ray Channels in FDA Communications
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Secrecy Performance for Finite-Alphabet Inputs Over Fluctuating Two-Ray Channels in FDA Communications

机译:FDA通信中波动双光通道的有限字母输入的保密性能

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摘要

To provide system design insights for practical communication systems equipped with the frequency diverse array (FDA), this letter investigates the secrecy performance of FDA systems exploiting finite-alphabet inputs over fluctuating two-ray (FTR) fading channels. More specifically, closed-form expressions for the average secrecy rate (ASR) and the secrecy outage probability (SOP) are derived, while their correctness is confirmed by numerical simulations. In addition, we perform asymptotic analysis to quantify the secrecy performance gap between Gaussian and finite-alphabet inputs, for a sufficiently large average signal-to-noise ratio (SNR) of the main channel. Compared with Gaussian inputs-based research, this letter focuses on practical scenarios which sheds lights on properties of FDA systems.
机译:为提供配备频率各种阵列(FDA)的实用通信系统的系统设计见解,这封信调查了FDA系统利用有限字母输入的FDA系统对波动双射线(FTR)衰落通道的保密性能。更具体地,推导出平均保密率(ASR)和保密性中断概率(SOP)的闭合表达,同时通过数值模拟确认其正确性。此外,我们执行渐近分析,以量化高斯和有限字母输入之间的保密性能差距,用于主通道的足够大的平均信噪比(SNR)。与基于高斯投入的研究相比,这封信侧重于揭示FDA系统性能的实际情况。

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