On-line estimation of unit hydrographs using the wavelet-based LMS algorithm

This study applies the discrete wavelet transform (DWT) to decompose the unit hydrograph, thereby generating parsimonious reparameterizations of the unit hydrograph. A model compression method is then employed to significantly compress the unit hydrograph requiring that fewer coefficients be estimat...

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Published inHydrological sciences journal Vol. 47; no. 5; pp. 721 - 738
Main Authors CHOU, Chien-Ming, WANG, Ru-Yih
Format Journal Article
LanguageEnglish
Published Wallingford IAHS Press 01.10.2002
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Online AccessGet full text
ISSN0262-6667
DOI10.1080/02626660209492976

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Abstract This study applies the discrete wavelet transform (DWT) to decompose the unit hydrograph, thereby generating parsimonious reparameterizations of the unit hydrograph. A model compression method is then employed to significantly compress the unit hydrograph requiring that fewer coefficients be estimated. Moreover, a wavelet-based linearly constrained least mean squares (WLCLMS) algorithm is also used to estimate on-line the wavelet coefficients of the unit hydrograph. The updated wavelet coefficients of the unit hydrograph, convoluted with effective rainfall input in the wavelet domain, allow for accurate prediction of one-step-ahead runoff in the time domain. The proposed approach allows the unit hydrographs to vary in time and accurately predicts runoff from a basin in Taiwan, thus making it highly promising for flood forecasting.
AbstractList This study applies the discrete wavelet transform (DWT) to decompose the unit hydrograph, thereby generating parsimonious reparameterizations of the unit hydrograph. A model compression method is then employed to significantly compress the unit hydrograph requiring that fewer coefficients be estimated. Moreover, a wavelet-based linearly constrained least mean squares (WLCLMS) algorithm is also used to estimate on-line the wavelet coefficients of the unit hydrograph. The updated wavelet coefficients of the unit hydrograph, convoluted with effective rainfall input in the wavelet domain, allow for accurate prediction of one-step-ahead runoff in the time domain. The proposed approach allows the unit hydrographs to vary in time and accurately predicts runoff from a basin in Taiwan, thus making it highly promising for flood forecasting.
Author CHOU, Chien-Ming
WANG, Ru-Yih
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Issue 5
Keywords algorithms
floods
models
possibilities
rainfall
atmospheric precipitation
simulation
accuracy
least-squares
drainage basins
Asia
discharge
prediction
hydrographs
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Snippet This study applies the discrete wavelet transform (DWT) to decompose the unit hydrograph, thereby generating parsimonious reparameterizations of the unit...
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StartPage 721
SubjectTerms algorithms
basins
Earth sciences
Earth, ocean, space
Exact sciences and technology
hydrograph
Hydrology
Hydrology. Hydrogeology
prediction
rain
runoff
Taiwan
wavelet
Title On-line estimation of unit hydrographs using the wavelet-based LMS algorithm
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