DocumentCode :
3686177
Title :
Joint estimation of the fractional differentiation orders and the unknown input for linear fractional non-commensurate system
Author :
Zehor Belkhatir;Taous-Meriem Laleg-Kirati
Author_Institution :
Comput., Electr. &
fYear :
2015
Firstpage :
388
Lastpage :
393
Abstract :
This paper deals with the joint estimation of the unknown input and the fractional differentiation orders of a linear fractional order system. A two-stage algorithm combining the modulating functions with a first-order Newton method is applied to solve this estimation problem. First, the modulating functions approach is used to estimate the unknown input for a given fractional differentiation orders. Then, the method is combined with a first-order Newton technique to identify the fractional orders jointly with the input. To show the efficiency of the proposed method, numerical examples illustrating the estimation of the neural activity, considered as input of a fractional model of the neurovascular coupling, along with the fractional differentiation orders are presented in both noise-free and noisy cases.
Keywords :
"Mathematical model","Noise measurement","Estimation error","Joints","Polynomials","Newton method"
Publisher :
ieee
Conference_Titel :
Control Applications (CCA), 2015 IEEE Conference on
Type :
conf
DOI :
10.1109/CCA.2015.7320660
Filename :
7320660
Link To Document :
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