In the paper a novel method for filter design based on the distributed maximal flatness method is presented. The proposed approach is based on the method used to design the most common FIR fractional delay filter – the maximally flat filter. The MF filter demonstrates excellent performance but only in a relatively narrow frequency range around zero frequency but its magnitude response is no greater than one. This ,,passiveness” is the reason why despite of its narrow band of accurate approximation, the maximally flat filter is widely used in applications in which the adjustable delay is required in feedback loop. In the proposed method the maximal flatness conditions forced in standard approach at zero frequency are spread over the desired ...
An optimal design procedure for maximally flat FIR (finite impulse response) filters, based on the B...
Fractional sample delay (FD) filters are useful and necessary in many applications, such as the accu...
This paper studies the design of causal stable Farrow-based infinite-impulse response (IIR) variable...
In the paper a novel method for filter design based on the distributed maximal flatness method is pr...
The family of FIR digital filters with maximally flat magnitude and group delay response is consider...
Conference PaperThis paper reports a new analytic technique for the design of nonlinear-phase maxima...
A new design technique for linear-phase FIR filters, based on maximally flat buildiing blocks, is pr...
Fractional delay (FD) filters are an important class of digital filters, and are useful in various s...
This paper studies the problem of designing digital finite duration impulse response (FIR) filters w...
This paper describes improvements in a Farrow-structured variable fractional delay (FD) Lagrange fil...
[[abstract]]In this brief, the designs of fixed-fractional-delay FIR filters using fractional-deriva...
A new technique is presented for the design of digital FIR filters, with a prescribed degree of flat...
This paper presents a computational method for the optimal design of all-pass variable fractional-de...
A technique is presented for designing linear-phase digital FIR filters, with a prescribed degree of...
This paper studies the design of digital finite impulse response (FIR) filters with prescribed flatn...
An optimal design procedure for maximally flat FIR (finite impulse response) filters, based on the B...
Fractional sample delay (FD) filters are useful and necessary in many applications, such as the accu...
This paper studies the design of causal stable Farrow-based infinite-impulse response (IIR) variable...
In the paper a novel method for filter design based on the distributed maximal flatness method is pr...
The family of FIR digital filters with maximally flat magnitude and group delay response is consider...
Conference PaperThis paper reports a new analytic technique for the design of nonlinear-phase maxima...
A new design technique for linear-phase FIR filters, based on maximally flat buildiing blocks, is pr...
Fractional delay (FD) filters are an important class of digital filters, and are useful in various s...
This paper studies the problem of designing digital finite duration impulse response (FIR) filters w...
This paper describes improvements in a Farrow-structured variable fractional delay (FD) Lagrange fil...
[[abstract]]In this brief, the designs of fixed-fractional-delay FIR filters using fractional-deriva...
A new technique is presented for the design of digital FIR filters, with a prescribed degree of flat...
This paper presents a computational method for the optimal design of all-pass variable fractional-de...
A technique is presented for designing linear-phase digital FIR filters, with a prescribed degree of...
This paper studies the design of digital finite impulse response (FIR) filters with prescribed flatn...
An optimal design procedure for maximally flat FIR (finite impulse response) filters, based on the B...
Fractional sample delay (FD) filters are useful and necessary in many applications, such as the accu...
This paper studies the design of causal stable Farrow-based infinite-impulse response (IIR) variable...