DocumentCode :
1253753
Title :
Minimax deconvolution design of multirate systems with channel noises: a unified approach
Author :
Cheng, Yu-Min ; Chen, Bor-Sen ; Chen, Li-Mei
Author_Institution :
Dept. of Electr. Eng., Nat. Tsing Hua Univ., Hsinchu, Taiwan
Volume :
47
Issue :
11
fYear :
1999
fDate :
11/1/1999 12:00:00 AM
Firstpage :
3145
Lastpage :
3149
Abstract :
The conventional signal reconstruction problem of multirate systems with channel noises can be cast as a robust multirate deconvolution design problem. We investigate a unified minimax approach for the robust deconvolution design of multirate systems. We discuss two typical multirate systems: the multirate filter bank system and the transmultiplexer system. We consider transmission noises resulting from quantization coding errors or external noises. The deconvolution filters for these systems that we derive are all IIR filters. The keypoint is converting the original robust deconvolution design problem to an equivalent minimax matching problem via polyphase decomposition and noble identities. Then, in spite of the presence of input signals and channel noises, we can solve this minimax matching problem by an optimization technique. The proposed method can be interpreted as designing an optimal multirate deconvolution filter such that the worst-case multirate system reconstruction error is minimized over all possible inputs and noises from the energy perspective. Therefore, our proposed design method is more robust than the conventional design method for multirate systems in the presence of uncertain input signals and channel noises. We present several numerical examples that show the good performance of our design method
Keywords :
IIR filters; channel bank filters; circuit optimisation; deconvolution; digital filters; minimax techniques; noise; quantisation (signal); signal reconstruction; transmultiplexing; 2-band filter bank system; IIR filters; channel noise; external noise; input signals; minimax deconvolution design; minimax matching problem; multirate filter bank system; multirate systems; noble identities; optimal multirate deconvolution filter; optimization technique; performance; polyphase decomposition; quantization coding errors; robust deconvolution design; signal reconstruction; speech processing; transmission noise; transmultiplexer system; uncertain input signals; unified minimax approach; worst-case multirate system reconstruction error; Channel bank filters; Deconvolution; Design methodology; Filter bank; IIR filters; Minimax techniques; Noise robustness; Quantization; Signal design; Signal reconstruction;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.796451
Filename :
796451
Link To Document :
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