Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/37946
Title: Optimum nonuniform transmultiplexer design
Authors: Ho, CYF
Ling, BWK
Liu, Y
Tam, PKS
Teo, KL
Keywords: FIR filters
Band-pass filters
Distortion
Frequency-domain analysis
Minimisation
Quadratic programming
Transmultiplexing
Issue Date: 2003
Source: Proceedings of the International Conference on Neural Networks and Signal Processing (ICNNSP'2003), Nanjing, China, 14-17 Dec. 2003, p. 740-743 How to cite?
Abstract: This paper considers an optimum nonuniform FIR transmultiplexer design subject to specifications in the frequency domain. The objective is to minimize the sum of the ripple energy for all the individual filters, subject to the specifications on amplitude and aliasing distortions, and to the passband and stopband specifications for the individual filters. This optimum nonuniform transmultiplexer design problem can be formulated as a quadratic semi-infinite programming problem. The dual parametrization algorithm is extended to the design of this nonuniform transmultiplexer problem. If the lengths of the filters are sufficiently long and the set of decimation integers is compatible, then our algorithm guarantees that the solution obtained will give rise to the global minimum, and the required specifications are satisfied.
URI: http://hdl.handle.net/10397/37946
ISBN: 0-7803-7702-8
DOI: 10.1109/ICNNSP.2003.1279381
Appears in Collections:Conference Paper

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