DocumentCode :
59863
Title :
Resource Allocation for QoS Support in Wireless Mesh Networks
Author :
Tae-suk Kim ; Yong Yang ; Hou, J.C. ; Krishnamurthy, Srikanth V.
Author_Institution :
Samsung Adv. Inst. of Technol., Yongin, South Korea
Volume :
12
Issue :
5
fYear :
2013
fDate :
May-13
Firstpage :
2046
Lastpage :
2054
Abstract :
Many next generation applications (such as video flows) are likely to have associated minimum data rate requirements in order to ensure satisfactory quality as perceived by end-users. In this paper, we develop a framework to address the problem of maximizing the aggregate utility of traffic flows in a multi-hop wireless network, with constraints imposed both due to self-interference and minimum rate requirements. The parameters that are tuned in order to maximize the utility are (i) transmission powers of individual nodes and (ii) the channels assigned to the different communication links. Our framework is based on using a cross-decomposition technique that takes both inter-flow interference and self-interference into account. The output of our framework is a schedule that dictates what links are to be activated in each slot and the parameters associated with each of those links. If the minimum rate constraint cannot be satisfied for all of the flows, the framework intelligently rejects a sub-set of the flows and recomputes a schedule for the remaining flows. We also design an admission control module that determines if new flows can be admitted without violating the rate requirements of the existing flows in the network. We provide numerical results to demonstrate the efficacy of our framework.
Keywords :
decomposition; next generation networks; quality of service; radio links; radiofrequency interference; resource allocation; telecommunication traffic; wireless channels; wireless mesh networks; QoS; admission control module; aggregate utility maximization; associated minimum data rate requirement; communication link; cross-decomposition technique; interflow interference; minimum rate requirement; multihop wireless mesh network; next generation application; powers transmission; radio channel; resource allocation; self-interference requirement; traffic flow; Interference; Logic gates; Quality of service; Resource management; Schedules; Vectors; Wireless communication; QoS; Wireless mesh network; admission control; congestion control; resource allocation;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2013.021213.120285
Filename :
6463489
Link To Document :
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