Title :
A distributed algorithm for path restoration in circuit switched communication networks
Author :
Venkatesan, S. ; Patel, Maulin ; Mittal, Neeraj
Author_Institution :
Dept. of Comput. Sci. & Telecommun. Eng. Program, Texas Univ., Dallas, TX, USA
Abstract :
Path restoration is an important approach for building survivable telecommunication backbone networks. Path restoration is known for high restoration efficiency and its ability to protect against single link, multiple link and node failures. Path restoration can be formulated as the well-known multi-commodity network flow (MCNF) problem. While many centralized algorithms have been proposed for solving the MCNF problem, distributed algorithms have received very little attention. This paper presents an online distributed multi-commodity flow approximation algorithm specifically tailored for path restoration. Our algorithm uses O(|E|diam2) messages and O(diam2) time in the worst case, and substantially fewer messages and less time in practical networks. When simulated on a sample real-life backbone network similar to those used by the telecommunication service providers, our algorithm finds a solution significantly faster than many published algorithms.
Keywords :
circuit switching; computational complexity; computer networks; distributed algorithms; telecommunication network routing; telecommunication switching; centralized algorithms; circuit switched communication networks; distributed algorithm; multicommodity network flow problem; online distributed multicommodity flow approximation algorithm; path restoration; real-life backbone network; Communication networks; Communication switching; Computer science; Distributed algorithms; Intelligent networks; Protection; Spine; Switching circuits; Telecommunication switching; Telecommunication traffic;
Conference_Titel :
Reliable Distributed Systems, 2005. SRDS 2005. 24th IEEE Symposium on
Print_ISBN :
0-7695-2463-X
DOI :
10.1109/RELDIS.2005.5