Title :
Analysis of even order IIR digital filters implemented as a cascade of first order complex allpass sections
Author :
Maskell, D.L. ; Allen, G.H.
Author_Institution :
James Cook Univ. of North Queensland, Townsville, Qld., Australia
Abstract :
A low-coefficient-sensitivity filter structure based on identical two-input complex allpass sections has been introduced. This structure is suitable for implementing even-order transfer functions such as bandpass and bandstop filters derived from lowpass prototypes. A scaling procedure for the cascade realization of identical second-order sections has been developed. The roundoff noise characteristics are calculated and compared with the roundoff noise for the original transfer function implemented as a cascade of second-order direct form sections and a cascade of single input complex allpass sections. The inband signal-to-noise ratio of the complex structure shows some improvement over the other implementations, with the signal-to-noise ratio remaining essentially constant irrespective of section order. The signal-to-noise ratio remains constant over the complete frequency band because of the complementary nature of the original implementation.<>
Keywords :
all-pass filters; band-pass filters; cascade networks; digital filters; transfer functions; bandpass filters; bandstop filters; cascade; even order IIR digital filters; even-order transfer functions; first order complex allpass sections; inband signal-to-noise ratio; low-coefficient-sensitivity filter structure; roundoff noise characteristics; scaling procedure; Australia; Band pass filters; Digital filters; Filtering theory; Frequency; IIR filters; Lattices; Passband; Prototypes; Transfer functions;
Conference_Titel :
Circuits and Systems, 1988., IEEE International Symposium on
Conference_Location :
Espoo, Finland
DOI :
10.1109/ISCAS.1988.14981