DocumentCode :
158285
Title :
A least-squares based pseudoinversion approach for non hyperbolic linear systems
Author :
Jetto, Leopoldo ; Orsini, Valentina ; Romagnoli, Raffaele
Author_Institution :
Dept. of Inf. Eng., Univ.´ Politec. delle Marche, Ancona, Italy
fYear :
2014
fDate :
16-19 June 2014
Firstpage :
151
Lastpage :
156
Abstract :
A new method to achieve an accurate output tracking for nonminimum phase linear systems with nonhyperbolic or near nonhyperbolic internal dynamics is presented. For the classical methods, developed in the framework of the preview based stable inversion, the nonhyperbolicity represents a rather serious inconvenience because the required preactuation time tends to become unacceptably large. Different stable inversion techniques, developed for SISO systems, are based on a proper redefinition of the desired output trajectory with the aim of canceling the undesired effects of unstable zeros. The main purpose of the new approach is to alleviate some theoretical and practical limitations inherent in the above methods. The desired output is here partitioned into the transient and steady-state components. The desired output to be exactly tracked in steady-state is assumed to belong to the set of polynomials, exponential and sinusoidal time functions. The transient input is “a priori” assumed to be given by a spline function. Once the desired output trajectory has been specified, this allows the computation of the unknown transient input as the approximate least-squares solution of the Fredholm´s integral equation corresponding to the explicit formula of the output forced response. The steady-state input is analytically computed exploiting the steady-state output response expressions for inputs belonging to the same set of the desired steady-state output.
Keywords :
Fredholm integral equations; least squares approximations; linear systems; stability; Fredholm integral equation; SISO systems; exponential functions; least-squares based pseudoinversion approach; least-squares solution; nonhyperbolic internal dynamics; nonhyperbolic linear systems; nonminimum phase linear systems; polynomial functions; sinusoidal time functions; steady-state components; Least squares approximations; Splines (mathematics); Steady-state; Switches; Trajectory; Transient analysis; Vectors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control and Automation (MED), 2014 22nd Mediterranean Conference of
Conference_Location :
Palermo
Print_ISBN :
978-1-4799-5900-6
Type :
conf
DOI :
10.1109/MED.2014.6961363
Filename :
6961363
Link To Document :
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