Title :
Conversion of 5-min and 10-min to 1-min average rainfall rate using east malaysia data
Author :
Selamat, Surati ; Mohd Marzuki, Azah Syafiah ; Md Azlan Tee, Azlinda Tee ; Naemat, Amran ; Khalil, Khaidir
Author_Institution :
TM R&D Sdn Bhd, Cyberjaya, Malaysia
Abstract :
Malaysia is well known for its wet tropical climate and monsoon seasons which bring rainfall almost throughout the year. Therefore, designing wireless communication links above 10 GHz for Malaysian weather involves study of rainfall rate and its integration time. The knowledge of local 1-min rainfall rate statistic is the key input for the estimation of signal attenuation due to rain. Due to limitation of 1-min rain rate data availability, the conversion model is necessary to translate higher integration time rainfall rate to the required 1-min rainfall statistic. In this paper, rainfall data from six locations in the East Malaysia is acquired from a local hydrological agency and processed to a meaningful 1-min, 5-min and 10-min rainfall rate statistics. Then, four conversion models are used to convert from 5-min and 10-min rainfall rate to 1-min rainfall rate. From the conversion error analysis, it is found that the Emiliani et al conversion method performed the best for this study.
Keywords :
electromagnetic wave attenuation; error analysis; monsoons; radiowave propagation; rain; tropospheric electromagnetic wave propagation; 1-min rain rate data availability; 10-min average rainfall rate statistics; 5-min average rainfall rate statistics; East Malaysia data; Malaysian weather; conversion error analysis; conversion model; integration time rainfall rate; local 1-min average rainfall rate statistics; local hydrological agency; monsoon seasons; signal attenuation; wet tropical climate; wireless communication links; Attenuation; Availability; Estimation; Microwave communication; Rain; 10-min to 1-min; 5-min to 1-min; rainfall rate conversion;
Conference_Titel :
Applied Electromagnetics (APACE), 2014 IEEE Asia-Pacific Conference on
Print_ISBN :
978-1-4799-6602-8
DOI :
10.1109/APACE.2014.7043755