DocumentCode :
2557869
Title :
Projection pursuit grade evaluation model based on maximum information entropy principle for river health system
Author :
Ju-Bang Jin ; Liang Cheng ; Yu-liang Zhou ; Zong-zhi Wang
Author_Institution :
Sch. of Civil Eng., Hefei Univ. of Technol., Hefei
fYear :
2008
fDate :
2-4 July 2008
Firstpage :
1435
Lastpage :
1439
Abstract :
In order to rationally determine each index weight and effectively deal with fiazziness and randomness existing in evaluation process, projection pursuit grade evaluation model based on maximum information entropy principle, named PPE for short, is proposed as a new evaluation approach. Optimal projection direction of PPE using accelerating genetic algorithm reflects the objective weights of evaluation indexes, hereby the rationality of original evaluation criterion can be verified and the major indexes of influencing river health can be identified. The results of PPE applied to evaluating a river health in the South of China show that the calculated membership degree value of the river health fuzzy set is 0.6115, so the river belongs to the grade of ldquohealthrdquo and approaches the grade of ldquoinferior healthrdquo; there is only objective weight relatively small value of the index ldquoriver blanking probabilityrdquo in the 25 evaluation indexes, and the objective weight value of other indexes approaches 0.04; the major indexes of influencing the river health are ldquothe collecting rate of the fee of water resourcerdquo, ldquoself-purification rate of water bodyrdquo, ldquothe index of regulating abilityrdquo, ldquochange rate of sediment transport capacityrdquo, ldquoGDP of per cubic meter waterrdquo, ldquochange rate of fish kindrdquo, ldquoperfect rate of nonstructural measures of flood controlrdquo and ldquosewage handling raterdquo, respectively; it is the important working content of the water security management of this river at present to improve the river health degrees of these indexes.
Keywords :
environmental management; fuzzy set theory; genetic algorithms; maximum entropy methods; rivers; evaluation index; fish kind; flood control; genetic algorithm; index weight; maximum information entropy principle; objective weight; projection pursuit grade evaluation model; regulating ability; river blanking probability; river health fuzzy set; river health system; sediment transport capacity; sewage handling rate; water security management; Acceleration; Blanking; Fuzzy control; Fuzzy sets; Genetic algorithms; Information entropy; Marine animals; Rivers; Sediments; Water resources; Management of watershed water security; Maximum information entropy principle; Projection pursuit method; River health system; River service fimction; System comprehensive evaluation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control and Decision Conference, 2008. CCDC 2008. Chinese
Conference_Location :
Yantai, Shandong
Print_ISBN :
978-1-4244-1733-9
Electronic_ISBN :
978-1-4244-1734-6
Type :
conf
DOI :
10.1109/CCDC.2008.4597555
Filename :
4597555
Link To Document :
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