Capacity of a land mobile satellite system

T. Beck, T. Ha
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Abstract

The authors investigate the throughput of an ALOHA land mobile satellite network operating in a vegetative shadowing environment. The fading statistic is represented by a lognormal probability density function which is incorporated in the throughput analysis. Both slotted and unslotted ALOHA protocols are considered. With the use of numerical analysis, it is shown that vegetative shadowing or lognormal shadowing improves the throughput considerably by reducing the mutual packet interference and thus enhanced the capture probability of a shared satellite receiver.<>
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陆地移动卫星系统的容量
作者研究了在植物遮蔽环境下运行的ALOHA陆地移动卫星网络的吞吐量。衰落统计量用对数正态概率密度函数表示,并将其纳入吞吐量分析。同时考虑了有槽和无槽ALOHA协议。数值分析表明,植物阴影或对数正态阴影通过减少互包干扰,从而提高了共享卫星接收机的捕获概率,大大提高了吞吐量。
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