2008Journal of Electromagnetic Waves and ApplicationsRequires access

Case Study of the Rain Attenuation at Ka Band

J. S. Mandeep, N. Y. Yann, S. I. S. Hassan

Open publisher page 8 citations

Abstract

This paper presents one year rain rate intensity and rain attenuation at Universiti Sains Malaysia (USM). Communication systems operating at frequencies above 10 GHz in equatorial climates are subjected to many fade occurrences due to heavy rain. Measurement of rain attenuation at Ku-band will be used to estimate the rain attenuation at Ka-band. The Ramachandran and Kumar model was used to calculate rain attenuation at Ka-band. Rain rate analysis using 1-minute data measurement at USM shows that the rain rate exceeded 110 mm/h for 0.01% of a year (R 0.01). Simultaneous rain attenuation (A 0.01) at Ku-band was at 18 dB and by using the predicted model, the rain attenuation at Ka-band was found to be 30 dB at 0.01% of time rain attenuation exceeded.

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What this paper is about

This paper presents one year rain rate intensity and rain attenuation at Universiti Sains Malaysia (USM). Communication systems operating at frequencies above 10 GHz in equatorial climates are subjected to many fade occurrences due to heavy rain. Measurement of rain attenuation at Ku-band will be used to estimate the rain attenuation at Ka-band. The Ramachandran and Kumar model was used to calculate rain attenuation at Ka-band. Rain rate analysis using 1-minute data measurement at USM shows that the rain rate exceeded 110 mm/h for 0.01% of a year (R 0.01). Simultaneous rain attenuation (A 0.01) at Ku-band was at 18 dB and by using the predicted model, the rain attenuation at Ka-band was found to be 30 dB at 0.01% of time rain attenuation exceeded.

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Available abstract

This paper presents one year rain rate intensity and rain attenuation at Universiti Sains Malaysia (USM). Communication systems operating at frequencies above 10 GHz in equatorial climates are subjected to many fade occurrences due to heavy rain. Measurement of rain attenuation at Ku-band will be used to estimate the rain attenuation at Ka-band. The Ramachandran and Kumar model was used to calculate rain attenuation at Ka-band. Rain rate analysis using 1-minute data measurement at USM shows that the rain rate exceeded 110 mm/h for 0.01% of a year (R 0.01). Simultaneous rain attenuation (A 0.01) at Ku-band was at 18 dB and by using the predicted model, the rain attenuation at Ka-band was found to be 30 dB at 0.01% of time rain attenuation exceeded.

Key concepts: Attenuation, Rain rate, Ka band, Environmental science, Meteorology, Remote sensing, Atmospheric sciences, Geology

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