DocumentCode :
2182423
Title :
Subband Architecture for HFB-Based A/D Converters
Author :
Asemani, Davud ; Oksman, Jacques
Author_Institution :
Dept. of Signal Process. & Electron. Syst., Ecole Superieure d´´Electr., Gif-sur-Yvette
fYear :
2006
fDate :
Oct. 18 2006-Sept. 20 2006
Firstpage :
753
Lastpage :
758
Abstract :
The classic structure of hybrid filter bank (HFB) A/D converters is very sensitive to realization errors. The relation between input and output is time-variant in the original HFB because of decimation. It causes the blind techniques not to be applicable for compensating the realization errors. In this paper, a new structure is proposed for HFB-based A/D converters which is called subband HFB architecture. The analog input is assumed to be decomposed into M narrowband signals and decimated for an M-channel HFB structure. They are considered as the new virtual inputs of the subband HFB. Subband HFB-based A/D converters estimate these virtual inputs and provide M output signals. The distortion and inter-channel interference (ICI) functions are defined for this new architecture. The synthesis part of subband HFB structure is designed using a matrix of FIR filters. The realization errors of subband HFB may be compensated using the techniques such as blind deconvolution. The new architecture is simulated for an eight-channel structure considering simply realizable RC and RLC circuits as the analysis filter bank. A good performance is reported in terms of distortion and ICI in the case where some parts of the spectrum are allocated to guard bands. The new subband HFB structure exhibits a better performance in comparison with the original one
Keywords :
RLC circuits; adjacent channel interference; analogue-digital conversion; channel bank filters; deconvolution; distortion; matrix algebra; A/D converters; FIR filters; HFB; RC circuits; RLC circuits; blind techniques; distortion; eight-channel structure; guard bands; hybrid filter bank; interchannel interference; narrowband signals; Analytical models; Circuit simulation; Circuit synthesis; Deconvolution; Filter bank; Finite impulse response filter; Interchannel interference; Matrix converters; Narrowband; Signal synthesis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Information Technologies, 2006. ISCIT '06. International Symposium on
Conference_Location :
Bangkok
Print_ISBN :
0-7803-9741-X
Electronic_ISBN :
0-7803-9741-X
Type :
conf
DOI :
10.1109/ISCIT.2006.339841
Filename :
4141486
Link To Document :
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