We present an automatic method for the evaluation of functions via polynomial or rational approximations and its hardware implementation, on FPGAs. These approximations are evaluated using Ercegovac's iterative E-method adapted for FPGA implementation. The polynomial and rational function coefficients are optimized such that they satisfy the constraints of the E-method. We present several examples of practical interest; in each case a resource-efficient approximation is proposed and comparisons are made with alternative approaches
Many general table-based methods for the evaluation in hardware of elementary functions have been pu...
This work deals with FPGA arithmetic operators, based on shift-and- add- algorithm for polynominal a...
International audienceThis article presents dedicated hardware arithmetic operators for function eva...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceIn this paper we extend the domain of applicability of the E-method, as a hard...
In this paper we extend the domain of applicability of the E-method [7, 8], as a hardware-oriented m...
International audienceMany applications require the evaluation of some function through polynomial a...
Abstract. Function evaluation is at the core of many compute-intensive applications which perform we...
International audienceMany applications require the evaluation of some function through polynomial a...
(eng) Many general table-based methods for the evaluation in hardware of elementary functions have b...
Many general table-based methods for the evaluation in hardware of elementary functions have been pu...
This work deals with FPGA arithmetic operators, based on shift-and- add- algorithm for polynominal a...
International audienceThis article presents dedicated hardware arithmetic operators for function eva...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceWe present an automatic method for the evaluation of functions via polynomial ...
International audienceIn this paper we extend the domain of applicability of the E-method, as a hard...
In this paper we extend the domain of applicability of the E-method [7, 8], as a hardware-oriented m...
International audienceMany applications require the evaluation of some function through polynomial a...
Abstract. Function evaluation is at the core of many compute-intensive applications which perform we...
International audienceMany applications require the evaluation of some function through polynomial a...
(eng) Many general table-based methods for the evaluation in hardware of elementary functions have b...
Many general table-based methods for the evaluation in hardware of elementary functions have been pu...
This work deals with FPGA arithmetic operators, based on shift-and- add- algorithm for polynominal a...
International audienceThis article presents dedicated hardware arithmetic operators for function eva...