[[abstract]]In this paper, a new approach to the design of digital FIR differentiators is presented. The differentiator is linear phase and has zero derivatives at DC frequency. The design is based on the maximization of signal-to-noise ratio (SNR) at the output of the differentiator. The optimal filter coefficients are obtained from the generalized eigenvector associated with the maximum eigenvalue of a pair of symmetric matrices. Estimation of the time derivative of polynomial signal, sinusoidal signal and handwritten Chinese signature is used to demonstrate that the proposed method provides better accuracy and higher SNR than the conventional differentiator methods
A new simple method to design linear-phase finite impulse response (FIR) digital filters, based on t...
This paper describes a new method for designing low-pass differentiators that could be widely suitab...
Abstract—A new optimization method for the design of fullband and lowpass IIR digital differentiator...
In this paper, an efficient design of FIR digital differentiator using the $L_1$-optimality criterio...
In this paper two methods of designing efficiently a digital linear-phase differentiator of an arbit...
Digital differentiators (DDs) which are maximally linear at the spot frequency ω=p/p, p ...
Interrelationships between seven types of digital FIR filters, viz. the differentiators (DD), Hilber...
Digital differentiators of orders greater than unity are often required in processing various types ...
The frequency response of conventional FIR digital differentiators (DD), using only integral delays,...
Optimal, maximally accurate digital differentiators (DDS) are derived for the low-frequency range. E...
Among the known FIR digital differentiators, the minimax relative error (MRE) approximations are the...
Recursive as well as explicit mathematical formulas have been derived for the weighting coefficients...
In this paper, design of linear phase FIR digital differentiators is investigated using convex optim...
A new simple method to design linear-phase finite impulse response (FIR) digital filters, based on t...
A new simple method to design linear-phase finite impulse response (FIR) digital filters, based on t...
A new simple method to design linear-phase finite impulse response (FIR) digital filters, based on t...
This paper describes a new method for designing low-pass differentiators that could be widely suitab...
Abstract—A new optimization method for the design of fullband and lowpass IIR digital differentiator...
In this paper, an efficient design of FIR digital differentiator using the $L_1$-optimality criterio...
In this paper two methods of designing efficiently a digital linear-phase differentiator of an arbit...
Digital differentiators (DDs) which are maximally linear at the spot frequency ω=p/p, p ...
Interrelationships between seven types of digital FIR filters, viz. the differentiators (DD), Hilber...
Digital differentiators of orders greater than unity are often required in processing various types ...
The frequency response of conventional FIR digital differentiators (DD), using only integral delays,...
Optimal, maximally accurate digital differentiators (DDS) are derived for the low-frequency range. E...
Among the known FIR digital differentiators, the minimax relative error (MRE) approximations are the...
Recursive as well as explicit mathematical formulas have been derived for the weighting coefficients...
In this paper, design of linear phase FIR digital differentiators is investigated using convex optim...
A new simple method to design linear-phase finite impulse response (FIR) digital filters, based on t...
A new simple method to design linear-phase finite impulse response (FIR) digital filters, based on t...
A new simple method to design linear-phase finite impulse response (FIR) digital filters, based on t...
This paper describes a new method for designing low-pass differentiators that could be widely suitab...
Abstract—A new optimization method for the design of fullband and lowpass IIR digital differentiator...