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Performance Analysis of Hardware-Impaired Overlay Cognitive Satellite–Terrestrial Networks With Adaptive Relaying Protocol

机译:具有自适应中继协议的硬件受损覆盖认知认知卫星地球网络性能分析

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In this article, we consider an overlay cognitive hybrid satellite-terrestrial network consisting of a primary satellite source-receiver pair and a secondary transmitter-receiver pair on the ground while taking into account the practical hardware impairments (HIs) at the user devices. Herein, a secondary terrestrial user acts as a cooperative relay to assist the transmission of primary satellite user. In return for this kind of favor, the secondary user gets access to the primary's spectrum for its own communication. Further, we consider the distortion noises induced by all the hardware-impaired terrestrial nodes and demonstrate their detrimental impact on the system performance. We manifest analytically that, for the higher data rates, the HIs invoke ceiling effects which reprehensibly cap the fundamental capacity of the system. To mitigate the effect of HIs, we propose an adaptive relaying (AR) protocol for both amplify-and-forward and decode-and-forward operations and compare its performance with the competitive fixed relaying schemes. The proposed AR protocol efficiently utilizes the available degrees-of-freedom to enhance the system performance. We comprehensively analyze the overall system performance by deriving closed-form expressions for the outage probability of the primary and secondary networks under heterogeneous fading environments. Our theoretical developments are corroborated through various numerical and simulation results.
机译:在本文中,我们考虑由主卫星源 - 接收器对组成的覆盖认知混合卫星 - 地面网络和地面上的二次发射器 - 接收器对,同时考虑到用户设备的实际硬件损伤(他)。这里,二次陆地用户用作协作继电器以帮助主卫星用户的传输。为了返回这种忙,辅助用户可以访问主要的频谱,以获取自己的通信。此外,我们考虑所有硬件受损地带节点引起的畸变噪声,并展示了对系统性能的不利影响。我们在分析上表现出,对于更高的数据速率,他的援引的天花板效应应谴责系统的基本能力。为了缓解他的效果,我们提出了一种适应性的中继(AR)协议,用于扩增和前进和转发操作,并将其性能与竞争性固定的中继方案进行比较。所提出的AR协议有效利用可用的自由度来提高系统性能。通过在异构衰落环境下派生初级和次要网络的停电概率来全面分析整体系统性能。我们的理论发展通过各种数值和仿真结果进行了证实。

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