Propagating Uniform Millimeter Wave in Dust and Sand Storm
Propagating Uniform Millimeter Wave in Dust and Sand Storm
复制标题
DOI:
10.1109/jrfid.2023.3268559
复制
发表时间:
2023
影响因子:
3.1
通讯作者:
Esmail M. M. Abuhdima-Esmail-M.-M.-Abuhdima-31030309;Chin-Tser Huang;P. Pisu;G. Comert;Jian Liu;Chunheng Zhao;Fred Chambers;Kibonke Niyomugabo;Nabeyou Tadessa;A. Nazeri
中科院分区:
文献类型:
--
作者:
Esmail M. M. Abuhdima-Esmail-M.-M.-Abuhdima-31030309;Chin-Tser Huang;P. Pisu;G. Comert;Jian Liu;Chunheng Zhao;Fred Chambers;Kibonke Niyomugabo;Nabeyou Tadessa;A. Nazeri
Recently, researchers have focused on the effect of changes in weather on the operation of wirelessly connected systems. Past researchers studied the impact of rain and snow on propagating electromagnetic waves. These researchers concluded that the millimeter waves are more sensitive to changing weather, and the vertical polarization is the best during rainy and snowy weather. Other studies concluded that the impact of dust and sand storms on the propagating 5G waves is not series when the visibility is greater than 10m. In this research, the normal and oblique incidence of the electrical and magnetic fields are considered during dusty/sandy medium with different forms of polarization to see which polarization is less affected by dust and sand storms. In the case of normal incidence, the proposed mathematical model of linear, circular, and elliptical polarization are used to see the behavior of different polarizations during dusty/sandy region. The transverse electric $(TE)$ and transverse magnetic field $(TM)$ are considered in the case of Oblique incidence uniform plane Wave. Maxwell’s equations and the Mie model are used to derive the mathematical model of the electric field and magnetic field in both incident forms. Finally, the numerical results are generated by using MATLAB to show the behavior of different polarization during severe weather.