Michael E. Henderson
International Journal of Bifurcation and Chaos in Applied Sciences and Engineering
In network communication systems, frequently messages are routed along a minimum diameter spanning tree (MDST) of the network, to minimize the maximum travel time of messages. When a transient failure disables an edge of the MDST, the network is disconnected, and a temporary replacement edge must be chosen, which should ideally minimize the diameter of the new spanning tree. Such a replacement edge is called a best swap. Preparing for the failure of any edge of the MDST, the all-best-swaps (ABS) problem asks for finding the best swap for every edge of the MDST. Given a 2-edge-connected weighted graph G=(V,E), where |V|=n and |E|=m, we solve the ABS problem in O(mlog∈n) time and O(m) space, thus considerably improving upon the decade-old previously best solution, which requires time and O(m) space, for m=o(n 2/log∈ 2 n). © 2010 Springer Science+Business Media, LLC.
Michael E. Henderson
International Journal of Bifurcation and Chaos in Applied Sciences and Engineering
R.A. Brualdi, A.J. Hoffman
Linear Algebra and Its Applications
F.M. Schellenberg, M. Levenson, et al.
BACUS Symposium on Photomask Technology and Management 1991
Mario Blaum, John L. Fan, et al.
IEEE International Symposium on Information Theory - Proceedings