DocumentCode
3284089
Title
Intelligent Weather Systems with Fuzzy Logic Controller for Satellite Networks
Author
Harb, Kamal ; Huang, Changcheng ; Srinivasan, Anand ; Cheng, Brian
Author_Institution
EION Wireless, Ottawa
fYear
2008
fDate
March 31 2008-April 3 2008
Firstpage
3069
Lastpage
3074
Abstract
Weather attenuations can have a distorting effect on signal fidelity above 10 GHz that lead to excessive digital transmission error. This loss of signal is commonly referred to as signal attenuation. Signal attenuation impacts QoS in wireless and satellite networks. An intelligent decision support system is therefore necessary for service providers by accurately calculating rain, gaseous, cloud, fog, and scintillation attenuations using predicted signal-weather correlated database in collaboration with ITU-R propagation models combined with gateway, and ground terminal characteristics. The effect becomes a key feature in adjusting and improving satellite signal power, modulation and coding schemes, monitored and controlled altogether by a powerful and efficient intelligent-based attenuation countermeasure system. A three dimensional relationship is proposed among these attenuations with respect to propagation angle and rainfall rate (Harb et al., 2007). The result pilots an enhanced back propagation-learning algorithm that is used to iteratively tune the intelligent controller based on fuzzy logic technique with returned SNR values for activating the weighted Modulation/Codepoint to its optimal values, depending on actual or predicted weather conditions, configuration settings and tolerance/safety margins for SLA commitment.
Keywords
backpropagation; decision support systems; fuzzy control; meteorology; satellite links; telecommunication computing; telecommunication control; transmission; back propagation-learning algorithm; cloud attenuations; digital transmission error; fog attenuations; fuzzy logic controller; gaseous attenuations; intelligent decision support system; intelligent weather systems; intelligent-based attenuation countermeasure system; rain attenuations; satellite networks; satellite signal coding; satellite signal modulation; satellite signal power; scintillation attenuations; signal attenuation; signal loss; signal-weather correlated database; weather attenuations; weighted codepoint; weighted modulation; Attenuation; Control systems; Decision support systems; Deductive databases; Distortion; Fuzzy logic; Intelligent networks; Intelligent systems; Modulation coding; Satellites;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Communications and Networking Conference, 2008. WCNC 2008. IEEE
Conference_Location
Las Vegas, NV
ISSN
1525-3511
Print_ISBN
978-1-4244-1997-5
Type
conf
DOI
10.1109/WCNC.2008.536
Filename
4489567
Link To Document