Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating Frequency
The purpose of this paper is to present a comparative analysis of hardware design of the Discrete Wavelet Transform (DWT) in terms of three design goals: accuracy, hardware cost and operating frequency. Every design should take into account the following facts: method (non-polyphase, polyphase and...
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2016-11-01
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doaj-bde9df262dc849ec8d09ad8ee36ecf152020-11-25T00:57:58ZengUniversidad EAFITIngeniería y Ciencia1794-91652256-43142016-11-01122410.17230/ingciencia.12.24.63508Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating FrequencyDora M. Ballesteros L.0Diego Renza1Luis Fernando Pedraza2Universidad Militar Nueva GranadaUniversidad Militar Nueva GranadaUniversidad Distrital Francisco José de Caldas The purpose of this paper is to present a comparative analysis of hardware design of the Discrete Wavelet Transform (DWT) in terms of three design goals: accuracy, hardware cost and operating frequency. Every design should take into account the following facts: method (non-polyphase, polyphase and lifting), topology (multiplier-based and multiplierless-based), structure (conventional or pipelined), and quantization format (floatingpoint, fixed-point, CSD or integer). Since DWT is widely used in several applications (e.g. compression, filtering, coding, pattern recognition among others), selection of adequate parameters plays an important role in the performance of these systems. http://publicaciones.eafit.edu.co/index.php/ingciencia/article/view/3508Discrete Wavelet Transformmethodtopologystructurequantization format |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dora M. Ballesteros L. Diego Renza Luis Fernando Pedraza |
spellingShingle |
Dora M. Ballesteros L. Diego Renza Luis Fernando Pedraza Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating Frequency Ingeniería y Ciencia Discrete Wavelet Transform method topology structure quantization format |
author_facet |
Dora M. Ballesteros L. Diego Renza Luis Fernando Pedraza |
author_sort |
Dora M. Ballesteros L. |
title |
Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating Frequency |
title_short |
Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating Frequency |
title_full |
Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating Frequency |
title_fullStr |
Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating Frequency |
title_full_unstemmed |
Hardware Design of the Discrete Wavelet Transform: an Analysis of Complexity, Accuracy and Operating Frequency |
title_sort |
hardware design of the discrete wavelet transform: an analysis of complexity, accuracy and operating frequency |
publisher |
Universidad EAFIT |
series |
Ingeniería y Ciencia |
issn |
1794-9165 2256-4314 |
publishDate |
2016-11-01 |
description |
The purpose of this paper is to present a comparative analysis of hardware design of the Discrete Wavelet Transform (DWT) in terms of three design goals: accuracy, hardware cost and operating frequency. Every design should take into account the following facts: method (non-polyphase, polyphase and lifting), topology (multiplier-based and multiplierless-based), structure (conventional or pipelined), and quantization format (floatingpoint, fixed-point, CSD or integer). Since DWT is widely used in several applications (e.g. compression, filtering, coding, pattern recognition among others), selection of adequate parameters plays an important role in the performance of these systems.
|
topic |
Discrete Wavelet Transform method topology structure quantization format |
url |
http://publicaciones.eafit.edu.co/index.php/ingciencia/article/view/3508 |
work_keys_str_mv |
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