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Performance Analysis of HSTC Network with Non-Static Terrestrial Nodes in a Fading Environment

机译:衰落环境下非静态地面节点HSTC网络性能分析

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摘要

In this paper, Hybrid satellite-terrestrial systems (HSTC) are preferred in dynamic type environments with high mobility of nodes due to the performance enhancement features in multiple relay-based selective decode-and-forward (DF) approach. Because of the satellite link, aerial satellite to destination and satellite to relay links, are not the same due to time-selective shadowed Rician fading. Time-selective Rician fading depends on parameters like the angle of elevation of the satellite, the terrestrial relay node, and the node destination links, considered to be distinctively time-selective Nakagami faded. Here, per-frame average symbol error rate (SER) and outage probability are derived in a closed-form expression with consideration of M-ary PSK modulated symbols transmission. After evaluation, it was detected that the system performance is significantly degraded due to the time-varying nature of the links (dynamic environment). After various simulations and calculations, it was established that the error rate of the HSTC is significantly low by increasing the elevation angle of the satellite on the relay point. The performance enhancement can be observed by enhancing the satellite angle at the destination node of user equipment.
机译:该文认为,基于多中继的选择性译码转发(DF)方法具有增强性能的特点,因此星地混合系统(HSTC)在节点移动性高的动态类型环境中是首选。由于卫星链路,空中卫星到目的地和卫星到中继链路,由于时间选择性阴影里西亚衰落,是不一样的。时间选择性Rician衰落取决于卫星的仰角、地面中继节点和节点目标链路等参数,这些参数被认为是具有明显时间选择性的Nakagami衰落。在这里,每帧平均符号错误率(SER)和中断概率在考虑M-ary PSK调制符号传输的情况下,以封闭式表达式推导。经过评估,发现由于链路(动态环境)的时变性质,系统性能显着下降。经过各种仿真和计算,通过增加卫星在中继点的仰角,HSTC的误码率明显较低。通过增强用户设备目标节点处的卫星角度,可以观察到性能的增强。

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