DocumentCode :
3220377
Title :
Differential Evolution algorithm for model reduction of SISO discrete systems
Author :
Yadav, J.S. ; Patidar, N.P. ; Singhai, J. ; Panda, Sidhartha
Author_Institution :
Dept. of Electron. & Commun. Eng., MANIT, Bhopal, India
fYear :
2009
fDate :
9-11 Dec. 2009
Firstpage :
1053
Lastpage :
1058
Abstract :
Reduction of Single Input Single Output (SISO) discrete systems into Reduced Order Model (ROM), using a conventional and a bio-inspired evolutionary technique is presented in this paper. In the conventional technique, mixed advantages of Modified Cauer Form (MCF) and differentiation are used. In this method, the original discrete system is first converted into equivalent continuous system by applying bilinear transformation. The denominator of the equivalent continuous system and its reciprocal are differentiated successively and the reduced denominator of the desired order is obtained by combining the differentiated polynomials. The numerator is obtained by matching the quotients of MCF. Finally, the reduced continuous system is converted back into discrete system using inverse bilinear transformation. In the evolutionary technique method, Differential Evolution (DE) optimization technique is employed to reduce the higher order model. DE method is based on the minimization of the Integral Squared Error (ISE) between the transient responses of original higher order model and the reduced order model pertaining to a unit step input. Both the methods are illustrated through numerical example.
Keywords :
continuous systems; differentiation; discrete systems; evolutionary computation; polynomials; reduced order systems; transient response; SISO discrete systems; bioinspired evolutionary technique; differential evolution algorithm; differential evolution optimization; differentiated polynomials; equivalent continuous system; integral squared error; inverse bilinear transformation; model reduction; modified Cauer form; reduced order model; single input single output discrete systems; transient responses; Continuous time systems; Control engineering; Electronic mail; Evolutionary computation; Minimization methods; Optimization methods; Polynomials; Read only memory; Reduced order systems; Steady-state; Bilinear Transformation; Differential Evolution; Discrete System; Integral Squared Error; Modified Cauer Form; Polynomial Differentiation; Reduced Order Model; Single-Input Single-Output (SISO);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nature & Biologically Inspired Computing, 2009. NaBIC 2009. World Congress on
Conference_Location :
Coimbatore
Print_ISBN :
978-1-4244-5053-4
Type :
conf
DOI :
10.1109/NABIC.2009.5393863
Filename :
5393863
Link To Document :
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