Title :
Development of new tropospheric scintillation prediction model for country in tropical climate
Author :
Yee, Anthony Cheng Chen ; Mandeep, JS ; Abdullah, M. ; Tariqul, M. ; Ismail, M. ; Suparta, W. ; Yatim, Baharudin ; Abdullah, H.
Author_Institution :
Dept. of Electr., Univ. Kebangsaan Malaysia, Bangi, Malaysia
Abstract :
This paper discusses development work for new tropospheric scintillation model base on ITU-R scintillation model. Tropospheric scintillation can be defined as rapid fluctuation of the amplitude or phase of a radio wave caused by changes of refractive index at the altitude (troposphere level). The prediction model for tropospheric scintillation from ITU is modified using measurement result from University Sains Malaysia (USM), Malaysia using 12.255GHz and elevation of 40.1° earth station. By applying so regression base on the measured scintillation data, a new model is proposed. The new proposed model does some modification on the frequency dependent term and time percentage factor on the ITU-R scintillation model. The proposed new model performs better than the convention ITU-R scintillation on both enhancement and fade scintillation by giving a percentage error less to 10%.
Keywords :
atmospheric electromagnetic wave propagation; climatology; radiowave propagation; satellite links; troposphere; ITU-R scintillation model; University Sains Malaysia; fade scintillation; frequency 12.255 GHz; frequency dependent term; radio wave amplitude fluctuation; radio wave phase fluctuation; refractive index; regression base; satellite link; time percentage factor; tropical climate; tropospheric scintillation prediction model; Data models; Equations; Mathematical model; Meteorology; Predictive models; Satellites; Satellite; Slant-path; Tropical climate; Tropospheric scintillation;
Conference_Titel :
Space Science and Communication (IconSpace), 2011 IEEE International Conference on
Conference_Location :
Penang
Print_ISBN :
978-1-4577-0563-2
Electronic_ISBN :
978-1-4577-0562-5
DOI :
10.1109/IConSpace.2011.6015859