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Channel Modelling and Performance Limits of Vehicular Visible Light Communication Systems

机译:车辆可见光通信系统的信道建模与性能限制

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Visible light communication (VLC) has been proposed as an alternative or complementary technology to radio frequency vehicular communications. Front and back vehicle lights can serve as wireless transmitters making VLC a natural vehicular connectivity solution. In this paper, we evaluate the performance limits of vehicular VLC systems. First, we use non-sequential ray tracing to obtain the channel impulse responses (CIRs) for vehicle-to-vehicle (V2V) link in various weather conditions. Based on these CIRs, we present a closed-form path loss expression which builds upon the summation of geometrical loss and attenuation loss and takes into account asymmetrical patterns of vehicle light sources and geometry of V2V transmission. The proposed expression is an explicit function of link distance, lateral shift between two vehicles, weather type (quantified by the extinction coefficient), transmitter beam divergence angle and receiver aperture diameter. Then, we utilize this expression to determine the maximum achievable link distance of V2V systems for clear, rainy and foggy weather conditions while ensuring a targeted bit error rate.
机译:已经提出了可见光通信(VLC)作为射频车辆通信的替代或互补技术。前后车灯可以用作无线发射器,使VLC成为天然车辆连接解决方​​案。在本文中,我们评估车辆VLC系统的性能限制。首先,我们使用非顺序射线跟踪来获得用于在各种天气条件下的车辆到车辆(V2V)链路的通道脉冲响应(CIR)。基于这些CIRS,我们介绍了一个闭合的路径损耗表达式,该表达式在几何损失和衰减损失的总和上建立,并考虑了车辆光源的不对称模式和V2V变速器的几何形状。所提出的表达是链路距离的显式功能,两个车辆之间的横向偏移,天气型(通过消光系数量化),发射器光束发散角和接收器孔径。然后,我们利用此表达式来确定V2V系统的最大可实现的链路距离,用于确保有针对性的误码率。

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