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Performance Characterization of a Hybrid Satellite-Terrestrial System with Co-Channel Interference over Generalized Fading Channels

机译:广义衰落信道上具有同信道干扰的混合卫星/地面系统的性能表征

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摘要

The transmission of signals in a hybrid satellite-terrestrial system (HSTS) in the presence of co-channel interference (CCI) is considered in this study. Specifically, we examine the problem of amplify-and-forward (AF)-based relaying in a hybrid satellite-terrestrial link, where the relay node is operating in the presence of a dominant co-channel interferer. It is assumed that direct connection between a source node (satellite) and a destination node (terrestrial receiver) is not available due to masking by obstacles in the surrounding. The destination node is only able to receive signals from the satellite with the help of a relay node located at the ground. In the proposed HSTS, the satellite-relay channel follows the shadowed Rice fading; and the channels of interferer-relay and relay-destination links experience generalized Nakagami-m fading. For the considered AF-based HSTS, we first develop the analytical expression for the moment generating function (MGF) of the overall output signal-to-interference-plus-noise ratio (SINR). Then, based on the derived exact MGF, we derive novel expressions for the average symbol error rate (SER) of the considered HSTS for the following digital modulation techniques: M-ary phase shift keying (M-PSK), M-ary quadrature amplitude modulation (M-QAM) and M-ary pulse amplitude modulation (M-PAM). To significantly reduce the computational complexity for utility in system-level simulations, simple analytical approximation for the exact SER in the high signal-to-noise ratio (SNR) regime is presented to provide key insights. Finally, numerical results and the corresponding analysis are presented to demonstrate the effectiveness of the developed performance evaluation framework and to view the impact of CCI on the considered HSTS under varying channel conditions and with different modulation schemes.
机译:在这项研究中考虑了在存在同频道干扰(CCI)的情况下在混合卫星地面系统(HSTS)中的信号传输。具体来说,我们研究了混合卫星-地面链路中基于中继转发(AF)的中继问题,其中中继节点在存在主要同频道干扰源的情况下运行。假设由于周围障碍物的掩盖,源节点(卫星)和目的节点(地面接收器)之间的直接连接不可用。目的节点只能借助位于地面的中继节点才能从卫星接收信号。在拟议的HSTS中,卫星中继信道遵循阴影的Rice衰落;干扰中继和中继目的地链路的信道会经历普遍的Nakagami-m衰落。对于考虑的基于AF的HSTS,我们首先针对总输出信号与干扰加噪声比(SINR)的矩生成函数(MGF)开发解析表达式。然后,基于派生的精确MGF,我们为以下数字调制技术推导出考虑的HSTS的平均符号错误率(SER)的新颖表达式:M元相移键控(M-PSK),M元正交幅度调制(M-QAM)和M进制脉冲幅度调制(M-PAM)。为了显着降低用于系统级仿真的实用程序的计算复杂性,本文提出了在高信噪比(SNR)情况下针对精确SER的简单分析近似,以提供重要见解。最后,给出了数值结果和相应的分析,以证明改进的性能评估框架的有效性,并查看在不同的信道条件和不同的调制方案下,CCI对考虑的HSTS的影响。

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