Title :
Effects of rain area motions and ground wind velocities on rain attenuation characteristics of Ku-band satellite signals
Author :
Maekawa, Yasuyuki ; Inamori, Yutaka ; Harada, Tatsuya ; Shibagaki, Yoshiaki
Author_Institution :
Dept. of Telecommun. & Comput. Network, Osaka Electro-Commun. Univ., Neyagawa, Japan
Abstract :
Speeds and directions of the motion of rain areas that cause the attenuation of Ku-band satellite communications links are estimated from the broadcast satellite (BS) signal levels simultaneously obtained at Osaka Electro-Communication University (OECU; Neyagawa, Osaka), the Research Institute for Sustainable Humanosphere (RISH; Uji, Kyoto) and the Shigaraki MU radar observatory (Koga, Shiga) of Kyoto University. The speeds and directions of rain area motion are compared with the ground wind velocities observed by a nearby AMeDAS station from 2008 to 2011. A correlation coefficients of nearly 0.6 is found between the directions of the rain area motions and the ground wind velocities although the directions tend to be rotated slightly anti-clockwise on the ground. Thus, the AMeDAS data seems to be important to determine the direction of satellite stations when the site diversity techniques are conducted.
Keywords :
rain; wind; AD 2008 to 2011; AMeDAS data; AMeDAS station; BS signal level; Koga; Ku-band satellite communication link attenuation; Ku-band satellite signal; Kyoto; Kyoto University; Neyagawa; OECU; Osaka; Osaka Electro-Communication University; RISH; Research Institute for Sustainable Humanosphere; Shiga; Shigaraki MU radar observatory; Uji; broadcast satellite signal level; correlation coefficient; ground wind velocity; rain area motion direction; rain area motion effect; rain area motion speed; rain attenuation characteristic; satellite station direction determination; site diversity technique; Attenuation; Educational institutions; Rain; Satellites; Spaceborne radar; Wind speed;
Conference_Titel :
General Assembly and Scientific Symposium (URSI GASS), 2014 XXXIth URSI
Conference_Location :
Beijing
DOI :
10.1109/URSIGASS.2014.6929680