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http://dx.doi.org/10.5515/KJKIEES.2008.19.6.698

Analysis of Propagation Characteristics by Statistical Analysis in Domestic Atmospheric Environments  

Choi, Moon-Young (Department of Radio Science and Engineering, Chungnam National University)
Lee, Gil-Jae (Agency for Defence Development)
Kim, Hyun-Soo (Agency for Defence Development)
Pack, Jeong-Ki (Department of Radio Science and Engineering, Chungnam National University)
Publication Information
Abstract
When electromagnetic waves propagate through atmosphere, waves are affected by various factors. Atmosphere normally consists of different molecular species, water vapours, rain, fog, snow and small suspended particles called aerosols. The distributions of atmosphere molecules, water vapours, rain rate, snowfall and aerosol are dependent on geometrical regions or environment. In order to predict propagation characteristics in atmospheric environment, statistical analysis of the relevant parameters such as temperature, humidity, atmospheric pressure, wind speed, areosol and rainfall is crucial. In this paper, we performed a long-term statistical analysis for the atmospheric parameters in domestic environments and analyzed the propagation characteristics through atmosphere based on that.
Keywords
Wave Propagation; Atmosphere; RF/MM Wave; IR; UV;
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  • Reference
1 Christian Gueymard, "SMARTS2, A simple model of the atmospferic radiative transfer of sunshine: algorithms and performance assessment", Florida Solar Energy Center, Dec. 1995
2 김지영, 김병철, "한반도에서 측정된 에어로졸의 크기 분포와 지역별 특성", 한국기상학회지, pp. 95-104. 2002년 2월
3 ITU-R P.838-3, "Specific attenuation model for rain for use in prediction methods", 2005
4 이주환, 한일탁, 백정기, "국내 지역별 강우강도 분포(TTAS.KO-06.0122)", 2006년 12월
5 ITU-R, P.1621-1 "Propagation data required for the design of Earth-space system operating between 20 THz and 375 THz", 2005
6 S. B. Carr, "The aerosol models in MODTRAN: incorporating selected measurements from Northern Australia", Defence Science and Technology Organisation, Dec. 2005
7 ITU-R P.676-7, "Attenuation by atmospheric gases", 2007
8 Z. W. Zhao, Z. S. Wu, "Millimeter-wave attenuation due to fog and clouds", Infrared and Millimeter Waves, 2000. Conference Digest. 2000 25th International Conference on, pp. 469-470, 2000
9 이주환, 한일탁, 백정기, "누적 시간에 따른 강우강도 분포 변환 방법(TTAS.KO-06.0123)", 2006년 12월
10 ITU-R 3J/TEMP/53-E, "Development of a weather- model for free space optical propagation"