34-41Rain attenuation is very severe at Ka and higher frequencies especially in tropical regions. The conventional fade mitigation techniques are not be able to mitigate this severe fade and hence, suitable diversity technique is required for this purpose. In this paper, rain characteristics and slant path rain attenuation at 30 GHz using synthetic storm technique has been presented. Three years of high resolution rain rate data obtained from disdrometer at four tropical and equatorial locations in India have been utilized. The results indicate that the fade margin requirement is very high (above 50 dB at 30 GHz) for 99.99% link availability for these locations. However, the diurnal analysis shows that in most of the places, the ...
Rain rate and rain attenuation predictions are one of the most important steps to be considered when...
This contribution investigates rain attenuation in Kuala Lumpur, Malaysia, by exploiting local Drop ...
Many telecommunication systems are going towards high frequencies as such ranges are in great demand...
176-179Experimentally measured values of radiowave attenuation due to rains in Ka band are not ava...
In the design of satellite communication link,rain attenuation statistics is essential information f...
Rain is the major source of attenuation for microwave propagation above 10 GHz. In tropical and equa...
Rain is the major source of attenuation for microwave propagation above 10 GHz. In tropical and equa...
45-50Quantitative analysis and prediction of radio signal attenuation is necessary in order to impr...
In this paper, results on yearly variability of measured attenuation at 13 GHz under rainy condition...
303-314Rain rate and rain attenuation predictions are one of the most important steps to be conside...
This paper is a brief review of Rain AttenuationModelling and Mitigation in the Tropics. The fast de...
Modern satellite communication system in higher frequency (Ka-band and above) is very much impaired ...
193-196The performance of the microwave links at frequencies have 10 GHz are constrained by the exce...
The fast growth in communication systems has resulted congestion in lower frequency bands and microw...
In the design of satellite communication link, rain attenuation statistics is essential information ...
Rain rate and rain attenuation predictions are one of the most important steps to be considered when...
This contribution investigates rain attenuation in Kuala Lumpur, Malaysia, by exploiting local Drop ...
Many telecommunication systems are going towards high frequencies as such ranges are in great demand...
176-179Experimentally measured values of radiowave attenuation due to rains in Ka band are not ava...
In the design of satellite communication link,rain attenuation statistics is essential information f...
Rain is the major source of attenuation for microwave propagation above 10 GHz. In tropical and equa...
Rain is the major source of attenuation for microwave propagation above 10 GHz. In tropical and equa...
45-50Quantitative analysis and prediction of radio signal attenuation is necessary in order to impr...
In this paper, results on yearly variability of measured attenuation at 13 GHz under rainy condition...
303-314Rain rate and rain attenuation predictions are one of the most important steps to be conside...
This paper is a brief review of Rain AttenuationModelling and Mitigation in the Tropics. The fast de...
Modern satellite communication system in higher frequency (Ka-band and above) is very much impaired ...
193-196The performance of the microwave links at frequencies have 10 GHz are constrained by the exce...
The fast growth in communication systems has resulted congestion in lower frequency bands and microw...
In the design of satellite communication link, rain attenuation statistics is essential information ...
Rain rate and rain attenuation predictions are one of the most important steps to be considered when...
This contribution investigates rain attenuation in Kuala Lumpur, Malaysia, by exploiting local Drop ...
Many telecommunication systems are going towards high frequencies as such ranges are in great demand...