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面向B5G毫米波40~50 GHz通信的漫散射传播与去极化建模

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漫散射传播与极化特性对于准确刻画、掌握毫米波(mmWave)信道传播机理,建立高精度毫米波通信信道模型至关重要.针对毫米波频段建筑材料粗糙面引起的漫散射传播和去极化特性表征不足,缺乏去极化理论模型的问题,该文提出一种基于有效粗糙度理论的漫散射去极化建模方法.从电磁波的极化维度分解粗糙面材料引起的漫散射辐射传播电场,引入去极化指数构建传播模型,利用40~50 GHz频段典型材料的实测数据,研究了功率角度谱、去极化指数和交叉极化鉴别比等漫散射传播及极化特性.结果表明,所提模型能够描述表面粗糙和光滑建筑材料的极化特性,去极化转化率分别高达39%和4%.
Diffuse Scattering Propagation and Depolarization Modeling for B5G Millimeter-wave Communications at 40~50 GHz
To achieve an accurate characterization and thorough understanding of the millimeter-Wave(mmWave)communication channel propagation mechanism,precise characterization of diffuse scattering propagation and polarization is crucial.These aspects are also indispensable for the development of a high-precision mmWave channel model.In response to the insufficient characterization of diffuse scattering propagation and polarization caused by building materials in the mmWave frequency bands,a novel diffuse scattering depolarization modeling method based on effective roughness theory is presented in this paper.Initially,the electric field of the diffuse scattering radiation produced by the rough surface of building materials is decomposed along the polarization dimension of the electromagnetic wave.Subsequently,the depolarization coefficient is introduced to establish the propagation model.The paper investigates the diffuse scattering propagation and polarization characteristics,encompassing the power angle spectrum,depolarization coefficient,and cross-polarization discrimination ratio,by utilizing measured data of typical materials in the 40~50 GHz frequency range.The obtained results validate that the proposed model effectively captures the polarization characteristics of building materials with both rough and smooth surfaces.The achieved depolarization conversion rates are 39%and 4%,respectively.

Millimeter Wave(mmWave)Diffuse scatteringPolarization characteristicCross polarization discrimination ratio

廖希、陈心睿、王洋、任明浩、陈前斌

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重庆邮电大学通信与信息工程学院 重庆 400065

复杂环境通信重庆市重点实验室 重庆 400030

毫米波 漫散射 极化特性 交叉极化鉴别比

国家自然科学基金国家自然科学基金重庆市自然科学基金重庆市自然科学基金重庆市自然科学基金创新发展联合基金

6227109562171071cstc2021jcyjmsxmX0634CSTB2022NSCQ-MSX1125CSTB2022NSCQ-LZX0073

2024

电子与信息学报
中国科学院电子学研究所 国家自然科学基金委员会信息科学部

电子与信息学报

CSTPCD北大核心
影响因子:1.302
ISSN:1009-5896
年,卷(期):2024.46(6)