DocumentCode
1249120
Title
Compensation of the RLS algorithm for output nonlinearities
Author
Wigren, Torbjörn ; Nordsjö, Anders E.
Author_Institution
Dept. of Syst. & Control, Inf. Technol., Uppsala Univ., Sweden
Volume
44
Issue
10
fYear
1999
fDate
10/1/1999 12:00:00 AM
Firstpage
1913
Lastpage
1918
Abstract
It is shown how the recursive least squares (RLS) algorithm can be modified to compensate for a priori known errors of linearity in the output measurement. A novel signal model is used for this purpose. Only the nonlinear effects are modeled by an output error model, and much of the output measurements are used directly in the regression vector. The main benefit with this approach is that the advantages of the RLS, like quick initial convergence for infinite impulse response models, can be retained for small linearity errors. At the same time the output nonlinearity is allowed to be noninvertible. This can be important to treat, for example, small deadzones and also to avoid the amplification of additive measurement disturbances. Such amplification can result from inversion of the output nonlinearity. Simulations illustrate the performance of the algorithm
Keywords
compensation; convergence of numerical methods; identification; least squares approximations; nonlinear systems; transient response; additive measurement disturbances; infinite impulse response models; linearity errors; nonlinear effects; output error model; output nonlinearities; recursive least squares algorithm; signal model; Algorithm design and analysis; Automatic control; Control systems; Feedback; Least squares methods; Linearity; Nonlinear systems; Process control; Resonance light scattering; Signal processing algorithms;
fLanguage
English
Journal_Title
Automatic Control, IEEE Transactions on
Publisher
ieee
ISSN
0018-9286
Type
jour
DOI
10.1109/9.793736
Filename
793736
Link To Document