Title :
An efficient method for evaluating polynomial and rational function approximations
Author :
Nicolas Brisebarre;Sylvain Chevillard;Milos D. Ercegovac;Jean-Michel Muller;Serge Torres
Author_Institution :
LIP - Ar?naire (CNRS - ENS Lyon - INRIA - UCBL), ?cole Normale Sup?rieure de Lyon, 46, all?e d?Italie, F-69364 Lyon Cedex 07, France
fDate :
7/1/2008 12:00:00 AM
Abstract :
In this paper we extend the domain of applicability of the E-method [7, 8], as a hardware-oriented method for evaluating elementary functions using polynomial and rational function approximations. The polynomials and rational functions are computed by solving a system of linear equations using digit-serial iterations on simple and highly regular hardware. For convergence, these systems must be diagonally dominant. The E-method offers an efficient way for the fixed-point evaluation of polynomials and rational functions if their coefficients conform to the diagonal dominance condition. Until now, there was no systematic approach to obtain good approximations to f over an interval [a, b] by rational functions satisfying the constraints required by the E-method. In this paper, we present such an approach which is based on linear programming and lattice basis reduction. We also discuss a design and performance characteristics of a corresponding implementation.
Keywords :
"Approximation methods","Polynomials","Approximation algorithms","Lattices","Function approximation","Vectors","Accuracy"
Conference_Titel :
Application-Specific Systems, Architectures and Processors, 2008. ASAP 2008. International Conference on
Print_ISBN :
978-1-4244-1897-8
DOI :
10.1109/ASAP.2008.4580185