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A Parameter Based Admission Control for Differentiated Services Networks
A Parameter Based Admission Control
for Differentiated Services Networks
Markus Fidler?
Department of Computer Science
Aachen University, Germany
fidler@rmatik.rwth-aachen.de
Volker Sander?
Central Institute for Applied Mathematics
Research Centre Ju?lich, Germany
v.sander@fz-juelich.de
Abstract
The Differentiated Services architecture targets at providing scalable network
Quality of Service by means of aggregate scheduling. However, the defined framework
itself only gives a number of building blocks, which do not constitute services yet.
In order to provide well defined services, the composition of the respective traffic
aggregates has to be controlled. This is usually the task of the admission control.
In this paper, we investigate a scenario, where access to advanced network services
is provided by a parameter based admission control, which allows to provide hard
Quality of Service guarantees. We address the scenario of a Premium service which
provides bandwidth on demand and which in addition allows to give deterministic
bounds on the delay. According the reservation-based approach of the Integrated
Services architecture, we propose a set of admission control procedure that are part
of a particular resource manager such as a Bandwidth Broker. In extending the
Network Calculus principles used by the Integrated Services architecture towards
aggregate based scheduling, we show how these procedures can provide reasonably
tight delay-bounds
1 Introduction
The Differentiated Services (DS) architecture [3] is the most recent approach of the Internet
Engineering Task Force (IETF) towards network Quality of Service (QoS). DS addresses
the scalability problems of the former Integrated Services approach by aggregation of indi-
vidual flows to a small number of different traffic classes, for which service differentiation
is provided. Packets are identified by simple markings that indicate the respective class.
In the core of the network, routers do not need to determine to
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