DocumentCode :
810334
Title :
On optimal computation of MPLS label binding for multipoint-to-point connections
Author :
Solano, Fernando ; Fabregat, Ramon ; Marzo, Jose Luis
Author_Institution :
Broadband & Distrib. Syst. Group, Univ. of Girona, Girona
Volume :
56
Issue :
7
fYear :
2008
fDate :
7/1/2008 12:00:00 AM
Firstpage :
1056
Lastpage :
1059
Abstract :
Most network operators have considered reducing Label Switched Routers (LSR) label spaces (i.e. the number of labels that can be used) as a means of simplifying management of underlaying Virtual Private Networks (VPNs) and, hence, reducing operational expenditure (OPEX). This letter discusses the problem of reducing the label spaces in Multiprotocol Label Switched (MPLS) networks using label merging - better known as MultiPoint-to-Point (MP2P) connections. Because of its origins in IP, MP2P connections have been considered to have tree- shapes with Label Switched Paths (LSP) as branches. Due to this fact, previous works by many authors affirm that the problem of minimizing the label space using MP2P in MPLS - the Merging Problem - cannot be solved optimally with a polynomial algorithm (NP-complete), since it involves a hard- decision problem. However, in this letter, the Merging Problem is analyzed, from the perspective of MPLS, and it is deduced that tree-shapes in MP2P connections are irrelevant. By overriding this tree-shape consideration, it is possible to perform label merging in polynomial time. Based on how MPLS signaling works, this letter proposes an algorithm to compute the minimum number of labels using label merging: the Full Label Merging algorithm. As conclusion, we reclassify the Merging Problem as Polynomial-solvable, instead of NP-complete. In addition, simulation experiments confirm that without the tree-branch selection problem, more labels can be reduced.
Keywords :
computational complexity; multiprotocol label switching; telecommunication network management; telecommunication network routing; trees (mathematics); virtual private networks; MPLS label binding; NP-complete problem; full label merging algorithm; label merging; label switched path; label switched router; multipoint-to-point connection; multiprotocol label switching; operational expenditure reduction; polynomial algorithm; tree-branch selection problem; virtual private network management; Computer network management; Educational institutions; Merging; Multiprotocol label switching; National electric code; Polynomials; Quality of service; Space technology; Tellurium; Virtual private networks;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOMM.2008.050601
Filename :
4568446
Link To Document :
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