[1]YAN Xue-feng.Modified nonlinear ridge regression with optimal ridge pa rameter and its application to 4-CBA soft sensor[J].CAAI Transactions on Intelligent Systems,2006,1(1):74-78.
Copy
CAAI Transactions on Intelligent Systems[ISSN 1673-4785/CN 23-1538/TP] Volume:
1
Number of periods:
2006 1
Page number:
74-78
Column:
学术论文—人工智能基础
Public date:
2006-03-25
- Title:
-
Modified nonlinear ridge regression with optimal ridge pa rameter and its application to 4-CBA soft sensor
- Author(s):
-
YAN Xue-feng
-
Automation Institute, East China University of Science and Technology, Shanghai 200237, China
-
- Keywords:
-
ridge regression; ridge parameter; evolution algorithm; soft sensor
- CLC:
-
O212.4
- DOI:
-
-
- Abstract:
-
Considering that there exist many factors having high -nonlinear and co mplex effect on the concentration of the 4carboxybenzaldehyde (4-CBA) in prod uc t, which was the most important intermediate product of p-xylene oxidation reac ti on, a modified nonlinear ridge regression (MNRR) based on optimal ridge paramet er, was proposed to develop the 4-CBA concentration soft sensor. Satisfactory r e sults were obtained. Firstly, MNRR applied the nonlinear transformation for init ial pattern independent variables to expand pattern space. Secondly, considering that there exists correlation or multicollinearity among the variables in the e xpanding pattern space, the ridge regression was employed, in which evolution al gorithm was used to obtain the global optimal ridge parameter according to the p re dicting ability of the model. Thus, the model was obtained that can describe com plex nonlinear system and has good predict accuracy. The comparison results show that the MNRR model has better predict accuracy than nonlinear least square r egr ession and nonlinear ridge regression based on generalized cross-validation of s electing the ridge parameter. In addition, MNRR overcomes the main flaw in tradi tional ridge regression that is difficult to obtain the global optimal ridge pa rameter, and thus has the robust character.