DocumentCode
2389010
Title
Efficient implementations of bounded shortest multicast algorithm
Author
Feng, Gang ; Kia Mao ; Pissinou, Niki
Author_Institution
Dept. of Electr. Eng., Wisconsin Univ., Platteville, WI, USA
fYear
2002
fDate
14-16 Oct. 2002
Firstpage
312
Lastpage
317
Abstract
The constrained minimum Steiner tree (CMST) problem is a key issue in multicast routing with quality of service (QoS) support. Bounded shortest path algorithm (BSMA) has been recognized as one of the best algorithms for the CMST problem due to its excellent cost performance. This algorithm starts with a minimum-delay tree, and then iteratively uses a k-shortest-path (KSP) algorithm to search for a better path to replace a "superedge" in the existing tree, and consequently reduces the cost of the tree. The major drawback of BSMA is its high time complexity because of the use of the KSP algorithm. For this reason, we investigate in this paper the possibility of more efficient implementations of BSMA by using different methods to locate the target path for replacing a superedge. Our experimental results indicate that our methods can significantly reduce the time complexity of BSMA without deteriorating the cost performance.
Keywords
iterative methods; multicast communication; quality of service; telecommunication network routing; BSMA; CMST problem; KSP algorithm; QoS; bounded shortest multicast algorithm; bounded shortest path algorithm; constrained minimum Steiner tree problem; cost performance; k-shortest-path algorithm; minimum-delay tree; quality of service; superedge; target path; time complexity; Costs; Delay; Information technology; Iterative algorithms; Multicast algorithms; Multicast protocols; Quality of service; Routing protocols; Video sharing; Videoconference;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Communications and Networks, 2002. Proceedings. Eleventh International Conference on
ISSN
1095-2055
Print_ISBN
0-7803-7553-X
Type
conf
DOI
10.1109/ICCCN.2002.1043084
Filename
1043084
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