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On the Performance of Cognitive Satellite-Terrestrial Relay Networks with Channel Estimation Error and Hardware Impairments

机译:具有信道估计误差和硬件损害的认知卫星地面中继网络的性能

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摘要

This paper investigates the joint impact of channel estimation errors (CEEs) and hardware impairments (HIs) on the performance of a cognitive satellite-terrestrial relay network (CSTRN), where the terrestrial and satellite links are considered following Rayleigh fading and shadowed Rician (SR) fading distributions, respectively. Besides, the terrestrial relay is working in half-duplex decode-and-forward (DF) mode. By employing a general and practical model to account for both the CEEs and HIs at each link, the end-to-end signal-to-noise-plus-distortion-and-error ratio (SNDER) is first obtained for the CSTRN. Then, closed-form expressions for the outage probability (OP) and throughput of the CSTRN are obtained, which allows us to demonstrate the aggregate impact of CEEs and HIs. In order to gain insightful findings, we further elaborate on the asymptotic OP and throughput at the high signal-to-noise-ratio (SNR) condition and quantitatively determine the fundamental performance ceiling. Finally, Monte Carlo (MC) computer simulations are provided to verify the correctness of the analytical results. Besides, with representative numerical analysis’s help, interesting findings are presented.
机译:本文研究了信道估计误差(CEE)和硬件损伤(HI)对认知卫星地面中继网络(CSTRN)性能的共同影响,其中考虑了瑞利衰落和阴影Rician(SR)的地面和卫星链路)的衰落分布。此外,地面中继正在半双工解码和转发(DF)模式下工作。通过采用通用和实用的模型来说明每个链路上的CEE和HI,首先为CSTRN获得了端到端的信噪比和失真和误差比(SNDER)。然后,获得了CSTRN的中断概率(OP)和吞吐量的闭式表达式,这使我们能够证明CEE和HI的总体影响。为了获得有见地的发现,我们进一步阐述了在高信噪比(SNR)条件下的渐近OP和吞吐量,并定量确定了基本性能上限。最后,提供了蒙特卡洛(MC)计算机仿真,以验证分析结果的正确性。此外,在具有代表性的数值分析的帮助下,还将提出一些有趣的发现。

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