The Air to Ground Clutter Loss Measurements and Modelling Below 10 GHz

Zhimeng Zhong, Cen Ling
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Abstract

6G-7G Hz (U6G) is one promising frequency band and will be utilized in 5G evolution period, but this frequency band has been occupied by non-terrestrial network (NTN) networks in some countries. The interference assessment between NTN and 5G evolution services in U6G is one of key issues needed to be considered before the large-scale deployment of U6G band in 5G evolution. Therefore, the clutter loss (CL) model is pivotal to the different systems co-existence evaluations. ITU-R has issued a Recommendation (ITU-R P.2108) giving CL model for the estimation of clutter loss at three different terminal environments for varied frequency range. However, the clutter loss model for NTN environment in ITU-R P.2108 only supports the frequency range from 10G Hz to 100 GHz and can be applicable to the terminal heights of below 5 m. In this paper, the clutter loss measurement and simulation below 10 GHz for NTN scenario has been conducted at different terminal heights on the ground in urban and suburban environments. Furthermore, the CL model is extended to the frequency bands below 10G Hz. In the proposed CL model, the terminal height is considered, which has high impact on the CL results. Taking 4-6m base station height as a baseline, we provide different ground station height results analysis based on both real measurement and ray-tracing simulation. An additional adjusting factor α is modelled to reflect different antenna height characteristics. The CL model will be adopted to the NTN and 5G evolution systems co-existence evaluation.
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10ghz以下空气对地杂波损耗测量与建模
6G-7G Hz (U6G)是一个很有前途的频段,将在5G演进阶段得到利用,但该频段在一些国家已经被非地面网络(NTN)网络所占据。U6G下NTN与5G演进业务的干扰评估是U6G频段在5G演进中大规模部署前需要考虑的关键问题之一。因此,杂波损失(CL)模型是评价不同系统共存性的关键。ITU-R发布了建议书(ITU-R P.2108),给出了在三种不同频率范围的终端环境下估计杂波损耗的CL模型。而ITU-R P.2108中针对NTN环境的杂波损耗模型只支持10G Hz ~ 100ghz的频率范围,适用于5m以下的终端高度。本文在城市和郊区不同终端高度的地面环境下,对NTN场景下10ghz以下的杂波损耗进行了测量和仿真。此外,将CL模型扩展到10G Hz以下的频段。在本文提出的CL模型中,考虑了终端高度,终端高度对CL结果影响较大。以4-6m基站高度为基线,在真实测量和射线追踪模拟的基础上,对不同的地面站高度结果进行了分析。模拟了一个额外的调节因子α来反映不同的天线高度特性。CL模型将被用于NTN和5G演进系统的共存评估。
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