DocumentCode
1168657
Title
Fuzzy-based adaptive bandwidth control for loss guarantees
Author
Siripongwutikorn, Peerapon ; Banerjee, Sujata ; Tipper, David
Author_Institution
Univ. of Pittsburgh, PA, USA
Volume
16
Issue
5
fYear
2005
Firstpage
1147
Lastpage
1162
Abstract
This paper presents the use of adaptive bandwidth control (ABC) for a quantitative packet loss rate guarantee to aggregate traffic in packet switched networks. ABC starts with some initial amount of bandwidth allocated to a queue and adjusts it over time based on online measurements of system states to ensure that the allocated bandwidth is just enough to attain the specified loss requirement. Consequently, no a priori detailed traffic information is required, making ABC more suitable for efficient aggregate quality of service (QoS) provisioning. We propose an ABC algorithm called augmented Fuzzy (A-Fuzzy) control, whereby fuzzy logic control is used to keep an average queue length at an appropriate target value, and the measured packet loss rate is used to augment the standard control to achieve better performance. An extensive simulation study based on both theoretical traffic models and real traffic traces under a wide range of system configurations demonstrates that the A-Fuzzy control itself is highly robust, yields high bandwidth utilization, and is indeed a viable alternative and improvement to static bandwidth allocation (SBA) and existing adaptive bandwidth allocation schemes. Additionally, we develop a simple and efficient measurement-based admission control procedure which limits the amount of input traffic in order to maintain the performance of the A-Fuzzy control at an acceptable level.
Keywords
bandwidth allocation; fuzzy control; fuzzy logic; packet switching; quality of service; telecommunication traffic; A-fuzzy control; ABC algorithm; QoS provisioning; adaptive bandwidth allocation; augmented fuzzy control; fuzzy logic control; fuzzy-based adaptive bandwidth control; measurement-based admission control; online measurements; packet switched networks; quality of service; quantitative packet loss rate guarantee; static bandwidth allocation; system configurations; traffic information; Adaptive control; Aggregates; Bandwidth; Channel allocation; Communication system traffic control; Fuzzy logic; Loss measurement; Programmable control; Quality of service; Traffic control; Adaptive bandwidth allocation; fuzzy control; quality of service (QoS); Algorithms; Artifacts; Artificial Intelligence; Computer Simulation; Fuzzy Logic; Information Storage and Retrieval; Internet; Models, Statistical; Pattern Recognition, Automated; Quality Control; Signal Processing, Computer-Assisted; Telecommunications;
fLanguage
English
Journal_Title
Neural Networks, IEEE Transactions on
Publisher
ieee
ISSN
1045-9227
Type
jour
DOI
10.1109/TNN.2005.853429
Filename
1510716
Link To Document