DocumentCode
3013638
Title
The fuzzy-controller for WiMAX networks
Author
Semenova, Olena ; Semenov, Andriy ; Voznyak, Oleksandr ; Mostoviy, Dmytro ; Dudatyev, Igor
Author_Institution
Fac. of Radio Eng., Telecommun. & Instrum. Eng., Vinnytsia Nat. Tech. Univ., Vinnytsia, Ukraine
fYear
2015
fDate
21-23 May 2015
Firstpage
1
Lastpage
4
Abstract
WiMAX is a broadband wireless last mile technology providing high speeds for long distances and offering great flexibility. Scheduling in WiMAX became one of the most important tasks, because it is responsible for distributing available resources among users. A high level of quality of service and scheduling support is one of the most interesting features of the WiMAX standard. In modern telecommunication networks the access control techniques are widely used. That is because using such devices instead of traditional ones permits to increase accuracy and reliability of control. Fuzzy systems have replaced conventional techniques in many engineering applications, especially in control systems. In the article it is suggested to use a fuzzy controller for access control in WiMAX networks that allows avoiding congestion in networks. The main objective of this work is providing an implementation of the WiMAX standard using the dynamic fuzzy logic based priority scheduler. We propose to use a fuzzy controller having three input and one output linguistic variables. Input linguistic variables of the controller are waiting time, queue length and packet size, its output variable is priority. A block diagram of the fuzzy controller was developed. Linguistic variables, terms and membership functions for input and output values have been defined. The Waiting time linguistic variable has three terms: low, medium, high. The Queue length linguistic variable has three terms: short, medium, long. The Packet size linguistic variable has three terms: small, medium, large. The rules base consisting of twenty-seven rules has been developed. The fuzzy controller has been simulated using Matlab 6.5. Results of the simulation prove the accuracy and reliability of the fuzzy-controller´s model.
Keywords
WiMax; broadband networks; fuzzy control; fuzzy systems; quality of service; queueing theory; scheduling; telecommunication congestion control; telecommunication network reliability; telecommunication security; Matlab 6.5; WiMAX network; WiMAX standard; access control technique; block diagram; broadband wireless last mile technology; congestion avoidance; control system; conventional technique; dynamic fuzzy logic based priority scheduler; fuzzy controller; fuzzy system; fuzzy-controller model; input linguistic variable; output linguistic variable; output variable; packet size linguistic variable; quality of service; queue length linguistic variable; reliability; scheduling support; telecommunication network; waiting time linguistic variable; Broadband communication; Telecommunication network reliability; WiMAX; fuzzy-controller; simulation;
fLanguage
English
Publisher
ieee
Conference_Titel
Control and Communications (SIBCON), 2015 International Siberian Conference on
Conference_Location
Omsk
Print_ISBN
978-1-4799-7102-2
Type
conf
DOI
10.1109/SIBCON.2015.7147214
Filename
7147214
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