Path Loss Analysis Considering Atmospheric Refractivity and Precipitation for Air-to-Ground Radar

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3
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3

초록

This paper reports a correlation analysis of path loss considering atmospheric refractivity and precipitation in an air-to-ground radar application. For the path loss estimation, the refractivity and rainfall attenuation models are derived using actual atmospheric data. The path loss along the range and altitude is obtained using parabolic equation software tool (PETOOL). The digital terrain elevation data (DTED) of the Suwon-Osan area, the radar antenna beam pattern, and environmental models are employed in the PETOOL. Then, we expand the path loss calculation in an azimuthal scan to observe the illuminated field intensity on the ground for a synthetic aperture radar (SAR) application. The results confirm that the illuminated field intensity for SAR applications is closely related to refractivity and precipitation. IEEE

키워드

Atmospheric modelingAttenuationcorrelation analysislong range air-to-ground propagationMathematical modelMeteorologypath lossprecipitationPropagationPropagation lossesRefractive indexRefractivityDirectional patterns (antenna)Radar antennasRefractionAtmospheric refractivityCorrelation analysisDigital terrain elevation datumEnvironmental modelParabolic EquationsRadar antenna beamRainfall attenuationsSAR applicationsSynthetic aperture radar
제목
Path Loss Analysis Considering Atmospheric Refractivity and Precipitation for Air-to-Ground Radar
저자
Wang, S.S.Choo, H.Lim, T.H.
DOI
10.1109/LAWP.2021.3101251
발행일
2021-10
유형
Article
저널명
IEEE Antennas and Wireless Propagation Letters
20
10
페이지
1968 ~ 1972