Path loss prediction analysis by ray tracing approach for NLOS indoor propagation

A. Bhuvaneshwari, R. Hemalatha, T. Satyasavithri
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引用次数: 21

Abstract

The performance of the wireless systems is significantly influenced by multiple reflections in addition to diffraction and scattering propagation effects. The geometric and dielectric properties of the obstacles vary to a large extent in the indoor environment and it is required to model these propagation effects accurately. In this paper, indoor mobile signal strengths are recorded at 2.4 GHz frequency for a wide corridor with glass partitions, in the premises of Deccan College of Engineering and Technology at Hyderabad. The data is collected within 10m from the source of the wireless router. Path loss is extracted from the measurements and comparisons are made with results derived by using two ray, four ray, six ray, and ten ray model. An N ray model is also implemented. Further a generalised ray tracing model is proposed by including diffraction and scattering effects. Diffraction losses due to the partitions are modelled using Fresnel-Kirchoff diffraction parameter and the spreading loss due to scattering is estimated using radar bi static equation. The performance of the proposed ray tracing model is evaluated by computing the error between the measurements and the proposed model. The least values of the error metrics for the proposed model indicate its accuracy in predicting the path loss for Wireless LAN mobile signals in the indoor environment.
基于光线追踪法的NLOS室内传播路径损耗预测分析
除了衍射和散射传播效应外,多重反射对无线系统的性能也有很大的影响。障碍物的几何和介电特性在室内环境中变化很大,需要对这些传播效应进行准确的建模。在本文中,在海德拉巴德干工程技术学院的场地内,记录了2.4 GHz频率下带有玻璃隔板的宽走廊的室内移动信号强度。采集距离无线路由器源10m范围内的数据。从测量数据中提取了路径损耗,并与二射线、四射线、六射线和十射线模型的结果进行了比较。还实现了N射线模型。进一步提出了一个包含衍射和散射效应的广义射线追踪模型。利用菲涅耳-基尔霍夫衍射参数模拟了由于分割引起的衍射损耗,利用雷达双静力方程估计了由于散射引起的扩散损耗。通过计算测量值与所提模型之间的误差来评价所提模型的性能。该模型误差指标的最小值表明其在室内环境下预测无线局域网移动信号路径损耗的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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