Title :
Suppression of transients in variable recursive digital filters with a novel and efficient cancellation method
Author :
Välimäki, Vesa ; Laakso, Timo I.
Author_Institution :
Helsinki Univ. of Technol., Espoo, Finland
fDate :
12/1/1998 12:00:00 AM
Abstract :
A new method for suppressing transients in recursive infinite impulse response (IIR) digital filters is proposed. The technique is based on modifying the state (delay) variables of the filter when coefficients are changed so that the filter enters a new state smoothly without transient attacks, as originally proposed by Zetterberg and Zhang (1988). In this correspondence, we modify the Zetterberg-Zhang algorithm to render it feasible for efficient implementation. We define a mean square error (MSE) measure for transients and determine the optimal transient suppressor to cancel the transients down to a desired level at the minimum complexity of implementation. The application of the method to all-pole and direct-form II (DF II) IIR filter sections is studied in detail. Time-varying recursive filtering with transient elimination is illustrated for tunable fractional delay filters and variable-bandwidth lowpass filters
Keywords :
IIR filters; delay filters; interference suppression; low-pass filters; mean square error methods; poles and zeros; recursive filters; time-varying filters; transient analysis; IIR digital filters; Zetterberg-Zhang algorithm; all-pole IIR filter sections; cancellation method; complexity; delay variables; direct-form II IIR filter sections; mean square error measure; optimal transient suppressor; recursive infinite impulse response digital filters; state variables; time-varying recursive filtering; transients; tunable fractional delay filters; variable recursive digital filters; variable-bandwidth lowpass filters; Costs; Digital filters; Filter bank; Finite impulse response filter; IIR filters; Prototypes; Signal analysis; Signal processing; Signal processing algorithms; Signal sampling;
Journal_Title :
Signal Processing, IEEE Transactions on