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Improvement of ray tracing in urban street cell environment of non line-of-site (NLOS) with consideration of building corner and its surface roughness

机译:基于建筑角度及地表粗糙度的非现场(NLOS)城市街道细胞环境中的射线追踪改善

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Mobile networks employing higher data rate and speed have been investigated for deployment of 5G mobile communication systems in urban microcellular environment. One of the approaches to achieve this goal, frequencies between 6 and 100 GHz are candidate to be utilized due to rich frequency spectrum. However radio propagation loss in these high frequencies is not characterized yet. Ray tracing (RT) method is one of the common technique, though the accuracy degrades as frequency becomes higher. In this paper, alternative model considering detailed building corner in intersection is proposed whereas building corner is, conventionally, assumed to be right-angle wedge shape. The proposed model also takes into account for surface roughness in order to enhance the accuracy for high frequencies. The parameter of surface roughness is optimized by comparing with measurement result. The proposed model with optimal size of surface roughness helps enhance accuracy, especially for high frequencies, compared with conventional wedge corner model. Accumulative error in terms of frequency can be resolved by the proposed model. Further discussion is described to develop the proposed model for better prediction applicable in both low and high frequency bands.
机译:已经研究了采用更高数据速率和速度的移动网络用于在城市微孔环境中部署5G移动通信系统。实现这一目标的方法之一,在6到100 GHz之间的频率是由于富频谱而被使用的候选者。然而,这些高频中的无线电传播损耗尚未表征。射线跟踪(RT)方法是常用技术之一,尽管频率变高,但精度降低。在本文中,提出了考虑交叉点的详细建筑角的替代模型,而建筑物是通常的,假设是正确的角度楔形。所提出的模型还考虑了表面粗糙度,以提高高频的准确性。通过与测量结果进行比较来优化表面粗糙度的参数。与传统的楔形角模型相比,具有最佳表面粗糙度的最佳表面粗糙度的拟议模型有助于提高精度,特别是对于高频。可以通过所提出的模型解决频率方面的累计误差。描述进一步讨论以开发所提出的模型,以便在低频和高频带中适用的更好预测。

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