JOURNAL ARTICLE

A fast and efficient heuristic algorithm for the delay- and delay variation bound multicast tree problem

Abstract

More and more multicast communications are becoming real-time. In real-time communications, messages must be transmitted to their destination nodes within a certain amount of time; otherwise the messages will be rendered futile. To support real-time multicast communications, computer networks have to guarantee an upper bound on the end-to-end delay from the source node to each of the destination nodes. This is known as the multicast end-to-end delay problem. On the other hand, if the same message fails to arrive at each destination node at the same time, there will probably arise inconsistency or unfairness problem among users. This is related to the multicast delay variation problem. Our research subject is concerned with the minimization of multicast delay variation under the multicast end-to-end delay constraint. The problem has been proved to be NP-complete and a heuristic algorithm for it called DVMA (delay variation multicast algorithm) has been proposed. In this paper we find that in spite of DVMA's smart performance in terms of multicast delay variations, its time complexity is as high as O(klmn/sup 4/). It is strongly believed that such a high time complexity does not fit in a modern high-speed computer network environment. Therefore, we present an alternative heuristic algorithm with a much lower time complexity O(mn/sup 2/) and with a satisfactory performance. Computer simulations also testify that our algorithm is both fast and efficient.

Keywords:
Multicast Computer science Xcast Source-specific multicast Pragmatic General Multicast Computer network Protocol Independent Multicast Heuristic Distributed computing Node (physics) Tree (set theory) Distance Vector Multicast Routing Protocol Inter-domain Variation (astronomy) Algorithm Mathematics Engineering

Metrics

38
Cited By
3.26
FWCI (Field Weighted Citation Impact)
11
Refs
0.93
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Network Traffic and Congestion Control
Physical Sciences →  Computer Science →  Computer Networks and Communications
Mobile Ad Hoc Networks
Physical Sciences →  Computer Science →  Computer Networks and Communications
Advanced Wireless Network Optimization
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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