Title :
Efficient QoS partition and routing of unicast and multicast
Author :
Lorenz, Dean H. ; Orda, Ariel ; Raz, Danny ; Shavitt, Yuval
Author_Institution :
Dept. of Electr. Eng., Israel Inst. of Technol., Haifa, Israel
Abstract :
In this paper we study problems related to supporting unicast and multicast connections with quality of service (QoS) requirements. We investigate the problem of optimal routing and resource allocation in the context of performance-dependent costs. In this context each network element can offer several QoS guarantees, each associated with a different cost. This is a natural extension to the commonly used hi-criteria model, where each link is associated with a single delay and a single cost. This framework is simple yet strong enough to model many practical interesting networking problems. An important problems in this framework is finding a good path for a connection that minimizes the cost whilst retaining the end-to-end delay requirement. Once such a path (or a tree in the multicast case) is found, one needs to partition the end-to-end QoS requirements among the links of the path (tree). We consider the case of general integer cost functions (where delays and cost are integers). As the related problem is NP complete, we concentrate on finding efficient ε-approximation solutions. We improve on recent previous results, both in terms of generality as well as in terms of complexity of the solution. In particular, we present novel approximation techniques that yield the best known complexity for the unicast QoS routing problem, and the first approximation algorithm for the QoS partition problem on trees, both for the centralized and distributed cases
Keywords :
approximation theory; minimisation; multicast communication; optimisation; quality of service; telecommunication network routing; trees (mathematics); NP complete problem; QoS partition; approximation techniques; centralized case; complexity; cost minimization; distributed case; end-to-end delay requirement; generality; hi-criteria model; integer cost functions; multicast routing; network element; optimal routing; path links; performance-dependent costs; quality of service; resource allocation; tree links; unicast routing; Bandwidth; Cost function; Delay; Internet; Pricing; Proposals; Quality of service; Resource management; Routing; Unicast;
Conference_Titel :
Quality of Service, 2000. IWQOS. 2000 Eighth International Workshop on
Conference_Location :
Pittsburgh, PA
Print_ISBN :
0-7803-6266-7
DOI :
10.1109/IWQOS.2000.847940