DocumentCode :
2944948
Title :
Minimizing of scheduling time under fair centralized scheduling and efficient routing algorithms for WiMAX based mesh networks
Author :
Farej, Ziyad K. ; Alani, Omar Younis
Author_Institution :
Dept. of Med. Inst. Tech. Eng., Tech. Coll. of Mosul, Mosul, Iraq
fYear :
2013
fDate :
17-18 Dec. 2013
Firstpage :
141
Lastpage :
146
Abstract :
In WiMAX mesh networks (WMN) the interferences among links have high effect on their performance. Therefore, an efficient routing algorithm is needed to choose the less interfered and more balanced links during the construction of the routing tree. Two Routing Tree Construction Algorithms, Paralleled (Par-RTCA) and Balanced-Paralleled (Bal-Par-RTCA) are introduced. The Bal-Par-RTCA, which is based on balancing the data and parallelizing the routes of the data from SS (Subscriber Station) to BS (Base Station), has the feature of Testing the Down-Node Group (TDNG). This feature increases the chance of conversion of Primary Interferences (PI) into Secondary Interferences (SI). The Modified Fair Relay Centralized Scheduling Algorithm (MFRCSA), which make use of spatial reuse efficiently, is also introduced here to avoid SI and increase concurrent transmissions over a certain time slot. As a result, system performance is enhanced in terms of Length of scheduling (L) and Links Concurrency Ratio (LCR). With spatial reuse and relative to the IEEE 802.16 standard Breadth First Tree (BFT) RTCA, the simulation results of the proposed Par-RTCA and Bal-Par-RTCA show LCR enhancement of 11.11% and 14.28%respectively.
Keywords :
WiMax; radiofrequency interference; relay networks (telecommunication); telecommunication network routing; telecommunication scheduling; trees (mathematics); wireless mesh networks; Bal-Par-RTCA; IEEE 802.16 standard; MFRCSA; TDNG; WMN; WiMAX mesh networks; balanced-paralleled-routing tree construction algorithms; breadth first tree RTCA; fair centralized scheduling; length of scheduling; links concurrency ratio; modified fair relay centralized scheduling algorithm; primary interferences; routing algorithms; secondary interferences; subscriber station-base station; testing the down-node group; WiMAX; Balanced-Paralleled RTCA; Down-Node Group; Length of Schedule; Paralleled RTCA; WiMAX mesh networks; link concurrency ratio;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical, Communication, Computer, Power, and Control Engineering (ICECCPCE), 2013 International Conference on
Conference_Location :
Mosul
Type :
conf
DOI :
10.1109/ICECCPCE.2013.6998750
Filename :
6998750
Link To Document :
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