DocumentCode
1241502
Title
Fuzzy Q-Learning Admission Control for WCDMA/WLAN Heterogeneous Networks with Multimedia Traffic
Author
Chen, Yung-Han ; Chang, Chung-Ju ; Huang, Ching Yao
Author_Institution
Inf. & Commun. Res. Labs., Ind. Technol. Res. Inst. (ITRI), Hsinchu, Taiwan
Volume
8
Issue
11
fYear
2009
Firstpage
1469
Lastpage
1479
Abstract
In this paper, admission control by a fuzzy Q-learning technique is proposed for WCDMA/WLAN heterogeneous networks with multimedia traffic. The fuzzy Q-learning admission control (FQAC) system is composed of a neural-fuzzy inference system (NFIS) admissibility estimator, an NFIS dwelling estimator, and a decision maker. The NFIS admissibility estimator takes essential system measures into account to judge how each reachable subnetwork can support the admission request´s required QoS and then output admissibility costs. The NFIS dwelling estimator considers the Doppler shift and the power strength of the requested user to assess his/her dwell time duration in each reachable subnetwork and then output dwelling costs. Also, in order to minimize the expected maximal cost of the user´s admission request, a minimax theorem is applied in the decision maker to determine the most suitable subnetwork for the user request or to reject. Simulation results show that FQAC can always maintain the system QoS requirement up to traffic intensity of 1.1 because it can appropriately admit or reject the users´ admission requests. Also, the FQAC can achieve lower blocking probabilities than conventional JSAC proposed in and can significantly reduce the handoff rate by 15-20 percent.
Keywords
broadband networks; code division multiple access; decision making; fuzzy reasoning; fuzzy set theory; minimax techniques; multimedia communication; neural nets; quality of service; telecommunication congestion control; telecommunication traffic; wireless LAN; Doppler shift; FQAC; NFIS admissibility estimator; NFIS dwelling estimator; QoS; WCDMA heterogeneous network; WLAN heterogeneous network; decision maker; fuzzy Q-learning admission control; minimax theorem; multimedia traffic; neural-fuzzy inference system; output admissibility cost; quality-of-service; wideband code division multiple access; wireless LAN; Fuzzy Q-learning; admission control; handoff; heterogeneous network.;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2009.65
Filename
4815247
Link To Document