DocumentCode
2719189
Title
Supporting Loss Guarantees in Buffer-Limited Networks
Author
Elhaddad, Mahmoud ; Melhem, Rami ; Znati, Taieb
Author_Institution
Dept. of Comput. Sci., Pittsburgh Univ., PA
fYear
23006
fDate
19-21 June 23006
Firstpage
239
Lastpage
250
Abstract
We consider the problem of packet scheduling in a network with small router buffers. The objective is to provide a statistical bound on the worst-case packet loss rate for a traffic aggregate (connection) routed along any network path, given maximum permissible link utilization (load). This problem is argued to be of interest in networks providing statistical loss-rate guarantees to ingress-egress connections with fixed bandwidth demands. We introduce a scheduling algorithm for networks using per packet transmission reservation. Reservations allow loss guarantees at the aggregate level to hold for individual flows within the aggregate. The algorithm employs randomization and traffic regulation at the ingress, and batch local scheduling at the links. It ensures that a large fraction of packets from each connection are consistently subject to small loss probability at every link. These packets are therefore likely to survive long paths. To obtain the desired loss-rate bound, we analyze the performance of the algorithm under global routing and bandwidth allocation scenarios that maximize the loss rate of a connection routed along an arbitrary network path. We compare the bound to that obtained using the scheduling algorithm that combines the FCFS service discipline and the drop-tail policy. We find that the proposed algorithm significantly improves the constraints on link utilization and path length necessary to achieve strong loss-rate guarantees
Keywords
buffer storage; queueing theory; telecommunication network routing; telecommunication traffic; FCFS service discipline; buffer-limited network; drop-tail policy; packet scheduling; router buffer; statistical bound; traffic aggregate; Aggregates; Channel allocation; Frequency measurement; Loss measurement; Optical buffering; Optical losses; Performance loss; Routing; Scheduling algorithm; Telecommunication traffic;
fLanguage
English
Publisher
ieee
Conference_Titel
Quality of Service, 2006. IWQoS 2006. 14th IEEE International Workshop on
Conference_Location
New Haven, CT
ISSN
1548-615X
Print_ISBN
1-4244-0476-2
Electronic_ISBN
1548-615X
Type
conf
DOI
10.1109/IWQOS.2006.250474
Filename
4015757
Link To Document