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Outage Probability and BER of the Ground to Train Communication Link of a Curved Track in Raining Turbulence with Pointing Errors

机译:在有指向性误差的雨流中,弯道的通信链路的中断概率和地面误码率

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We model the outage probability and bit-error rate (BER) for an intensity-modulation/direct detection optical wireless communication (OWC) systems for the ground-to-train of the curved track in rainy weather. By adopting the inverse Gaussian models of the raining turbulence, we derive the outage probability and average BER expression for the channel with pointing errors. The numerical analysis reveals that the rainfall can disrupt the stability and accuracy of the system, especially the rainstorm weather. The improving of the shockproof performance of the tracks and using long wavelength of the signal source will improve the communication performance of OWC links. The atmospheric turbulence has greater impact on the OWC link than the cover track length. The pointing errors caused by beam wander or train vibration are the dominant factors decreasing the performance of OWC link for the train along the curved track. We can choose the size of communication transmitting and receiving apertures to optimize the performance of the OWC link.
机译:我们在雨天的弯轨地面到火车的强度调制/直接检测光学无线通信(OWC)系统中,对断电概率和误码率(BER)进行建模。通过采用降雨湍流的逆高斯模型,我们推导了具有指向误差的信道的中断概率和平均BER表达式。数值分析表明,降雨会破坏系统的稳定性和准确性,尤其是暴雨天气。改善轨道的防震性能并使用长波长的信号源将改善OWC链路的通信性能。大气湍流对OWC链路的影响大于覆盖轨道的长度。由束流漂移或火车振动引起的指向误差是降低火车沿曲线轨道的OWC连杆性能的主要因素。我们可以选择通信发送和接收孔的大小,以优化OWC链路的性能。

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