Empirical Models and Parameters for Rural and Indoor Wideband Radio Channels At 2.45 and 5.25 GHZ

D. Laselva, Xiongwen Zhao, J. Meinilä, T. Jämsä, J. Nuutinen, P. Kyösti, L. Hentilä
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引用次数: 21

Abstract

The modeling results from wideband radio channel measurements are presented for two environments: rural and indoor. The paper focuses on the average and instantaneous characteristics of received power including: path loss, shadow fading, power delay profiles, and rms delay spreads. Furthermore, the cross correlation between shadowing of the path loss and the delay spread is investigated and found to be large. Doppler measurement campaigns were conducted in both environments, at 2.45 GHz and 5.25 GHz along the same measurement routes, with 100 MHz bandwidth. In this paper it is shown that we may apply 2.45 GHz band small scale models into 5.25 GHz band. It can be also seen, as for the measured scenarios, on average, the difference in terms of path loss between 2.45 GHz and 5.25 GHz in line-of-sight indoor environment, where waveguide effect is encountered, is c.a. 8 dB, instead in rural outdoor the mentioned difference is c.a. 6 dB
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2.45 GHZ和5.25 GHZ农村和室内宽带无线电信道的经验模型和参数
给出了两种环境下宽带无线信道测量的建模结果:农村和室内。本文重点研究了接收功率的平均和瞬时特性,包括路径损耗、阴影衰落、功率延迟分布和均方根延迟扩展。此外,研究了路径损失的阴影与延迟扩展之间的相互关系,发现路径损失的阴影与延迟扩展之间的相互关系很大。多普勒测量活动在两种环境下进行,在2.45 GHz和5.25 GHz沿着相同的测量路线,100 MHz带宽。本文表明,我们可以将2.45 GHz频段的小比例模型应用到5.25 GHz频段。还可以看到,在测量的场景中,在遇到波导效应的视距室内环境中,2.45 GHz和5.25 GHz之间的路径损耗平均差异约为8 dB,而在农村室外,上述差异约为6 dB
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