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Performance Analysis of IoT-Based Overlay Satellite-Terrestrial Networks Under Interference

机译:干扰下基于物联网覆盖卫星 - 地面网络的性能分析

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In this article, we consider an overlay satellite-terrestrial network (OSTN) where an opportunistically selected terrestrial Internet-of-Things (IoT) network assists the primary satellite communications as well as accesses the spectrum for its own communications under hybrid interference received from extra-terrestrial sources (ETSs) and terrestrial sources (TSs). Herein, the IoT network adopts power-domain multiplexing to amplify-and-forward the superposed satellite and IoT signals. Considering a unified analytical framework for shadowed-Rician fading with integer/non-integer Nakagami-m parameter for satellite and interfering ETSs links along with the integer/non-integer Nakagami-m fading for terrestrial IoT and interfering TSs links, we derive the outage probability (OP) of both satellite and IoT networks. Further, we derive the respective asymptotic OP expressions to reveal the diversity order of both satellite and IoT networks at high signal-to-noise ratio (SNR). We show that the proposed OSTN with adaptive power-splitting factor benefits the IoT network while guaranteeing certain quality-of-service (QoS) of satellite network. We verify the numerical results by simulations.
机译:在本文中,我们考虑一个覆盖卫星 - 地面网络(OSTN),其中机会选择的地面互联网(物联网)网络有助于主要卫星通信以及在从额外收到的混合干扰下访问其自身通信的频谱 - 网络来源(ETS)和地面来源(TSS)。这里,IOT网络采用功率域多路复用以放大叠加的卫星和IOT信号。考虑到具有整数/非整数NAKAGAMI-M用于卫星和干扰ETS链接的统一rician衰落的统一分析框架以及整数/非整数NAKAGAMI-M用于地面IOT和干扰TSS链接,我们派生了卫星和物联网网络的概率(OP)。此外,我们得出了各自的渐近OP表达式,以揭示卫星和物联网网络以高信噪比(SNR)的分集顺序。我们展示了具有自适应功率分裂因子的建议的OST,在保证卫星网络的某些服务质量(QoS)的同时有益于IoT网络。我们通过模拟验证数值结果。

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