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Modelling and Analysis of FSO Ground-to-Train Communications for Straight and Curved Tracks

机译:用于直线和弯曲轨道的FSO接地通信的建模与分析

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In this work, a free space optical (FSO) link for the ground-to-train communications is proposed. Analytical analysis is carried out for the case of the straight track as well as curved rail tracks. We show that the transmitter divergence angle, the transmit power and the size of the concentration lens needs to increase for the curved section of the rail track compared to the straight track. We derive the analytical expression (11) for the received power level along the rail tracks based on the link geometry for the cases of straight and curved tracks. The received power variation is compared for two cases showing a similar dynamic range. In the worst case scenario when the radius of curvature is 120 m the transmit power at the base station (BS) needs to increase by over 2 dB when the concentration lens radius is increased by 5 times. Analyses also show that the received power increases with the radius of curvature. Finally, results are compared with the existing straight track model.
机译:在这项工作中,提出了一种用于接地通信的自由空间光学(FSO)链路。 对直轨的情况以及弯曲导轨轨道进行分析分析。 我们表明,与直线轨道相比,发射功率和浓度透镜的浓度透镜的尺寸需要增加轨道轨道的弯曲部分。 基于直线和弯曲轨道的壳体的链路几何形状,我们沿着轨道轨道推导出接收功率电平的分析表达式(11)。 将接收的功率变化进行比较,两种情况显示出类似的动态范围。 在最坏的情况下,当曲率半径为120米的基站(BS)的发射功率时,当浓度透镜半径增加5次时,需要增加2dB。 分析还表明,接收功率随着曲率半径而增加。 最后,将结果与现有的直轨模型进行比较。

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