A new design technique for linear-phase FIR filters, based on maximally flat buildiing blocks, is presented. The design technique does not involve iterative approximations and is, therefore, fast. It gives rise to filters that have a monotone stopband response, as required in some applications. The technique is partially based on an interpolative scheme. Implementation of the obtained filter designs requires a much smaller number of multiplications than maximally flat (MAXFLAT) FIR filters designed by the conventional approach. A technique based on FIR spectral transformations to design new multiplierless FIR filter structures is then advanced, and multiplierless implementations for sharp cutoff specifications are included
Several new techniques for open problems in the frequency domain design of FIR and IIR digital filte...
This paper studies the problem of designing digital finite duration impulse response (FIR) filters w...
In this work, a novel genetic algorithm (GA) is proposed for the design of multiplierless linear pha...
A new technique is presented for the design of digital FIR filters, with a prescribed degree of flat...
A technique is presented for designing linear-phase digital FIR filters, with a prescribed degree of...
An implementation for maximally-flat FIR filters is proposed that requires a much smaller number of ...
In the paper a novel method for filter design based on the distributed maximal flatness method is pr...
The paper provides, through the use of Bernstein polynomials, a new insight into the design of maxim...
An optimal design procedure for maximally flat FIR (finite impulse response) filters, based on the B...
This paper presents a recently introduced technique (or the design of Maximally-flat (MAX-FLAT) FIR ...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
The family of FIR digital filters with maximally flat magnitude and group delay response is consider...
The design of Finite Impulse Response (FIR) digital filters that considers both phase and magnitude ...
Conference PaperThis paper reports a new analytic technique for the design of nonlinear-phase maxima...
We present an efficient FIR filter design algorithm that generalizes existing cascaded FIR prefilter...
Several new techniques for open problems in the frequency domain design of FIR and IIR digital filte...
This paper studies the problem of designing digital finite duration impulse response (FIR) filters w...
In this work, a novel genetic algorithm (GA) is proposed for the design of multiplierless linear pha...
A new technique is presented for the design of digital FIR filters, with a prescribed degree of flat...
A technique is presented for designing linear-phase digital FIR filters, with a prescribed degree of...
An implementation for maximally-flat FIR filters is proposed that requires a much smaller number of ...
In the paper a novel method for filter design based on the distributed maximal flatness method is pr...
The paper provides, through the use of Bernstein polynomials, a new insight into the design of maxim...
An optimal design procedure for maximally flat FIR (finite impulse response) filters, based on the B...
This paper presents a recently introduced technique (or the design of Maximally-flat (MAX-FLAT) FIR ...
International audienceThis work presents two novel methods that simultaneously optimize both the des...
The family of FIR digital filters with maximally flat magnitude and group delay response is consider...
The design of Finite Impulse Response (FIR) digital filters that considers both phase and magnitude ...
Conference PaperThis paper reports a new analytic technique for the design of nonlinear-phase maxima...
We present an efficient FIR filter design algorithm that generalizes existing cascaded FIR prefilter...
Several new techniques for open problems in the frequency domain design of FIR and IIR digital filte...
This paper studies the problem of designing digital finite duration impulse response (FIR) filters w...
In this work, a novel genetic algorithm (GA) is proposed for the design of multiplierless linear pha...