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Degree-Based Spanning Tree Optimization: approximation algorithms and relationship to graph vulnerability - Gábor Salamon

englanti
2012-10-27
52,90 € 70,53 €

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Toimitus 12-18 arkipäivässä

30 päivän palautusoikeus

We consider several spanning tree optimization problems all having a measure function which depends only on the degrees of the resulting spanning tree. In addition, all investigated problems are generalizations of the Hamiltonian Path problem and so are NP-hard. As we cannot expect exact polynomial-time solutions, we use the approach of approximation algorithms. We look for a suboptimal solution in polynomi ... Täydellinen kuvaus

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We consider several spanning tree optimization problems all having a measure function which depends only on the degrees of the resulting spanning tree. In addition, all investigated problems are generalizations of the Hamiltonian Path problem and so are NP-hard. As we cannot expect exact polynomial-time solutions, we use the approach of approximation algorithms. We look for a suboptimal solution in polynomial time and prove that it is not farther from the optimal one than a given approximation factor. Beside algorithmic aspects, we also consider the number of spanning tree leaves from a bit more theoretical point of view. We investigate how different graph vulnerability parameters, namely scattering number and cut-asymmetry, are related to the number of spanning tree leaves and that of independent spanning tree leaves. Some of our results are applied for the analysis of the Maximum Internal Spanning Tree problem, while some others give connection to the theory of hamiltonicity. In particular, we give a sufficient condition for the existence of a Hamiltonian path by means of cut-asymmetry.

Lisätietoja

Kirjoittaja Gábor Salamon
Julkaisija LAP LAMBERT Academic Publishing
Julkaisuvuosi 2012
Kannen tyyppi Pehmeäkantinen
EAN 9783659288654
Kirjoita oma arvostelusi
Arvostelet: Degree-Based Spanning Tree Optimization: approximation algorithms and relationship to graph vulnerability
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52,90 € 70,53 €