An improved approach of predicting rain attenuation cumulative distribution (CD) over terrestrial microwave links operating in tropical regions is presented in this article. The proposed method offers a better extrapolation approach for determining the values of rain attenuation at different exceedance probability from the measured attenuation at 0.01% of the time. The experimental data consist of measured rainfall rates and rain attenuation over six geographically spread DIGI MINI-LINKs operating at 15 GHz in Malaysia. A new set of numerical coefficients was derived for improved rain attenuation CD predictions in the Malaysian tropical climate. In order to test the applicability of the proposed extrapolation method, a validation was ...
Attenuation due to rainfall is one of the most fundamental constraints on the performance of satelli...
Attenuation due to rain is an important constraint in microwave radio link design especially at freq...
The signals operating at higher microwave frequency ranges get attenuated in the tropical regions wh...
An improved approach of predicting rain attenuation cumulative distribution (CD) over terrestrial mi...
The results of rain attenuation on terrestrial microwave links in a tropical climate has been report...
The use of full rainfall rate distribution for the prediction of rain attenuation over terrestrial m...
Substantial modifications have been made to the expressions for calculating distance factor and extr...
Abstract Substantial modifications have been made to the expressions for calculating distance factor...
This paper presents the results of direct rain attenuation measurements carried out on four experime...
The radio waves propagates through the earth atmosphere will be attenuated due to presence of the at...
Rain is a major source of attenuation for microwave propagation above 10 GHz. In tropical and equato...
Most satellite communication takes place above the 10 GHz frequency bands, a direct consequence of o...
This paper proposes a model for predicting rain attenuation in the tropical region. Slant path rain ...
Radio waves propagate through the earth's atmosphere will be attenuated due to presence of the atmos...
Attenuation due to rain is an important constraint in microwave radio link design especially at freq...
Attenuation due to rainfall is one of the most fundamental constraints on the performance of satelli...
Attenuation due to rain is an important constraint in microwave radio link design especially at freq...
The signals operating at higher microwave frequency ranges get attenuated in the tropical regions wh...
An improved approach of predicting rain attenuation cumulative distribution (CD) over terrestrial mi...
The results of rain attenuation on terrestrial microwave links in a tropical climate has been report...
The use of full rainfall rate distribution for the prediction of rain attenuation over terrestrial m...
Substantial modifications have been made to the expressions for calculating distance factor and extr...
Abstract Substantial modifications have been made to the expressions for calculating distance factor...
This paper presents the results of direct rain attenuation measurements carried out on four experime...
The radio waves propagates through the earth atmosphere will be attenuated due to presence of the at...
Rain is a major source of attenuation for microwave propagation above 10 GHz. In tropical and equato...
Most satellite communication takes place above the 10 GHz frequency bands, a direct consequence of o...
This paper proposes a model for predicting rain attenuation in the tropical region. Slant path rain ...
Radio waves propagate through the earth's atmosphere will be attenuated due to presence of the atmos...
Attenuation due to rain is an important constraint in microwave radio link design especially at freq...
Attenuation due to rainfall is one of the most fundamental constraints on the performance of satelli...
Attenuation due to rain is an important constraint in microwave radio link design especially at freq...
The signals operating at higher microwave frequency ranges get attenuated in the tropical regions wh...