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《A randomized polynomial-time simplex algorithm for linear programming》.pdf
A Randomized Polynomial-Time Simplex Algorithm for
Linear Programming
∗ †
Jonathan A. Kelner Daniel A. Spielman
Computer Science and Artificial Intelligence Department of Computer Science
Laboratory Yale University
Massachusetts Institute of Technology
ABSTRACT a theoretical standpoint, the study of linear programming
We present the first randomized polynomial-time simplex has motivated major advances in the study of polytopes,
algorithm for linear programming. Like the other known convex geometry, combinatorics, and complexity theory.
polynomial-time algorithms for linear programming, its run- While the simplex method was the first practically useful
ning time depends polynomially on the number of bits used approach to solving linear programs and is still one of the
to represent its input. most popular, it was unknown whether any variant of the
We begin by reducing the input linear program to a spe- simplex method could be shown to run in polynomial time
cial form in which we merely need to certify boundedness. in the worst case. In fact, most common variants have been
As boundedness does not depend upon the right-hand-side shown to have exponential worst-case complexity. In con-
vector, we run the shadow-vertex simplex method with
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