The role of signaling in quality of service enabled networks
- 1 June 1999
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Communications Magazine
- Vol. 37 (6) , 124-132
- https://doi.org/10.1109/35.769286
Abstract
In this article we identify the common building blocks that enable some networks to provide better than best-effort transfer guarantees to the traffic they carry. We consider the role signaling plays in such a network and argue in favor of pinned routes, with a highly efficient pinning process, to improve network stability and to ease the task of maintaining QoS guarantees in the face of changing network characteristics, including failures; the use of broad QoS classes to determine the path that a particular flow should follow through the network; and providing the flexibility of specifying the detailed QoS for the flow, if needed, at any arbitrary time during the life of the flow. We conclude that a flexible signaling architecture is an essential enabling component of any QoS-aware network. We present an overview of the design and implementation of UNITE, as an example of a signaling architecture that embodies these attributes. More generally, we consider the relationship between QoS-related signaling and other protocols and mechanisms that may form part of an overall QoS-enabled network and service infrastructureKeywords
This publication has 6 references indexed in Scilit:
- Integration of call signaling and resource management for IP telephonyIEEE Network, 1999
- An Architecture for Differentiated ServicesPublished by RFC Editor ,1998
- A Framework for QoS-based Routing in the InternetPublished by RFC Editor ,1998
- Service-specific control architectures for ATMIEEE Journal on Selected Areas in Communications, 1998
- The Tempest: a framework for safe, resource assured, programmable networksIEEE Communications Magazine, 1998
- Switchlets and Dynamic Virtual ATM NetworksPublished by Springer Nature ,1997