DocumentCode
3330981
Title
Improved approximations for shallow-light spanning trees
Author
Naor, Joseph Seffi ; Schieber, Baruch
Author_Institution
Dept. of Comput. Sci., Technion-Israel Inst. of Technol., Haifa, Israel
fYear
1997
fDate
20-22 Oct 1997
Firstpage
536
Lastpage
541
Abstract
We consider the bicriteria optimization problem of computing a shallow-light tree. Given a directed graph with two unrelated cost functions defined on its edges: weight and length, and a designated root vertex, the goal is to find a minimum weight spanning tree such that the path lengths from its root to the rest of the vertices are bounded. This problem has several applications in network and VLSI design, and information retrieval. We give a polynomial time algorithm for finding a spanning tree whose weight is O(log |V|) times the weight of an optimal shallow-light tree, where the path lengths from the root to the rest of the vertices are at most twice the given bounds. We extend our technique to handle two variants of the problem: one in which the length bound is given on the average length of a path from the root to a vertex, and another tricriteria budgeted version. Our paper provides the first non-trivial approximation factors for directed graphs, and improves on previous results for undirected graphs
Keywords
computational complexity; directed graphs; optimisation; VLSI design; bicriteria optimization; directed graph; directed graphs; information retrieval; non-trivial approximation factors; polynomial time algorithm; shallow-light spanning trees; Computer science; Cost function; Delay; Integrated circuit interconnections; Length measurement; Polynomials; Tin; Tree graphs; Very large scale integration; Weight measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Foundations of Computer Science, 1997. Proceedings., 38th Annual Symposium on
Conference_Location
Miami Beach, FL
ISSN
0272-5428
Print_ISBN
0-8186-8197-7
Type
conf
DOI
10.1109/SFCS.1997.646142
Filename
646142
Link To Document