DocumentCode :
1600369
Title :
Distributed admission control to support guaranteed services in core-stateless networks
Author :
Bhatnagar, Sudeept ; Nath, Badri
Author_Institution :
Dept. of Comput. Sci., Rutgers Univ., USA
Volume :
3
fYear :
2003
Firstpage :
1659
Abstract :
The core-stateless service architecture alleviates the scalability problems of the integrated service framework while maintaining its guaranteed service semantics. The admission control methods proposed to support core-stateless guaranteed services have significant drawbacks: We propose a scalable and robust distributed admission control architecture to support core-stateless guaranteed services. Our architecture maintains high network utilization while ensuring that resources are not over-allocated. In our architecture, admission control is performed at the ingress edge routers of a request on an edge-to-edge path basis. A token-passing mechanism is used as the resource management framework. The token helps in dynamic and fair division of bandwidth and allows completely distributed resource allocation on a link unless it is close to saturation. The edge routers co-operate to provide fault tolerance effectively acting as a resilient overlay network. Our admission control framework can support statistical guarantees and diffserv architecture´s premium service as well. The resource management part of our architecture is well-suited to aid QoS routing algorithms. Analytical and simulation results are presented to show the effectiveness of our architecture.
Keywords :
Internet; distributed control; fault tolerance; network routing; protocols; quality of service; resource allocation; Internet; QoS routing algorithm; core-stateless guaranteed service architecture; core-stateless network; diffserv architecture; distributed admission control architecture; distributed resource allocation; dynamic bandwidth division; edge-to-edge path basis; fault tolerance; ingress edge router; integrated service framework; network utilization; overlay network; resource management framework; token-passing mechanism; Admission control; Analytical models; Bandwidth; Diffserv networks; Fault tolerance; Intserv networks; Resource management; Robust control; Routing; Scalability;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM 2003. Twenty-Second Annual Joint Conference of the IEEE Computer and Communications. IEEE Societies
ISSN :
0743-166X
Print_ISBN :
0-7803-7752-4
Type :
conf
DOI :
10.1109/INFCOM.2003.1209189
Filename :
1209189
Link To Document :
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