2011
DOI: 10.1002/net.20460
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Completely independent spanning trees in torus networks

Abstract: Let T 1 , T 2 , . . . , T k be spanning trees in a graph G. If for any two vertices u, v in G, the paths from u to v in T 1 , T 2 , . . . , T k are pairwise internally disjoint, then T 1 , T 2 , . . . , T k are completely independent spanning trees in G. Completely independent spanning trees can be applied to fault-tolerant communication problems in interconnection networks. In this article, we show that there are two completely independent spanning trees in any torus network. Besides, we generalize the result… Show more

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Cited by 59 publications
(25 citation statements)
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“…Suppose m is odd. For m = 3, Hasunuma and Morisaka [7] has proven that in any Cartesian product of 2-connected graphs, there are two completely independent spanning trees. By Propositions 3.12, 3.13, 3.10, 3.11 and 3.9, we obtain that there exist ⌈m/2⌉ completely independent spanning trees for m = 5 or (m = 7 ∧ n = 3, 4) or (m = 9 ∧ n = 4, 5).…”
Section: Figurementioning
confidence: 99%
“…Suppose m is odd. For m = 3, Hasunuma and Morisaka [7] has proven that in any Cartesian product of 2-connected graphs, there are two completely independent spanning trees. By Propositions 3.12, 3.13, 3.10, 3.11 and 3.9, we obtain that there exist ⌈m/2⌉ completely independent spanning trees for m = 5 or (m = 7 ∧ n = 3, 4) or (m = 9 ∧ n = 4, 5).…”
Section: Figurementioning
confidence: 99%
“…The decision problem of determining whether there are two Completely Independent Spanning Trees in a graph G is NP-hard in general [20]. CISTs have been studied on different classes of graphs, such as underlying graphs of line graphs [5], maximal planar graphs [20], cartesian product of two cycles [21] and complete graphs, complete bipartite and tripartite graphs [22]. Inspired by the Tutte-Nash-William theorem on the edge-disjoint trees [11], [12], Hasunama conjectured in [20] that there are k completely independent spanning trees in any 2k-connected graph.…”
Section: Related Workmentioning
confidence: 99%
“…Hasunuma [8] conjectured that there are k CISTs in any 2k-connected graph and showed the NP-completeness for determining the existence of two CISTs in an arbitrary graph G. So far the study related to CISTs has received less attention except for [1], [8]- [10]. Araki [1] showed that a graph G of n vertices has two CISTs if the minimum degree of G is at least n/2, and the square of a 2-connected graph has two CISTs.…”
Section: Introductionmentioning
confidence: 99%
“…Araki [1] showed that a graph G of n vertices has two CISTs if the minimum degree of G is at least n/2, and the square of a 2-connected graph has two CISTs. Hasunuma showed that there are k CISTs in the underlying graph of any k-connected line digraph L(G) [8], there are two CISTs in any 4-connected maximal planar graph [9], and there are two CISTs in the Cartesian product of any 2-connected graphs [10]. Recently, Péterfalvi [15] gave counterexamples to disprove Hasunuma's conjecture.…”
Section: Introductionmentioning
confidence: 99%