This work deals with limit cycle control for one particular class of hybrid dynamical systems (HDS): The cyclic switched systems. HDS were born because the traditional dynamical models were not able to describe complex behaviours (behaviours with discontinuities). From an application point of view, one important class of HDS depicts a cyclic behaviour in steady state. Its main characteristic is that a control that maintains the system on a desired operation point does not exist. However, this point can be obtained in average. Thus, a cycle is produced by switching among the system modes. A control law must satisfy stability and dynamical performance. Moreover, criteria related to the waveform must be verified. Some generic methods are studied. The proposed algorithms can be implemented in real-time. Approaches are based on an affine non-linear model whose control explicitly appears. Two control methods are considered: a predictive control and an optimal control. Since predictive control is a good choice for tracking, it maintains the system in a cycle. Optimal control yields solutions that can be applied to transients. Some experiments applied to the power converters are shown.
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This work deals with limit cycle control for one particular class of hybrid dynamical systems (HDS): The cyclic switched systems. HDS were born because the traditional dynamical models were not able to describe complex behaviours (behaviours with discontinuities). From an application point of view, one important class of HDS depicts a cyclic behaviour in steady state. Its main characteristic is that a control that maintains the system on a desired operation point does not exist. However, this point can be obtained in average. Thus, a cycle is produced by switching among the system modes. A control law must satisfy stability and dynamical performance. Moreover, criteria related to the waveform must be verified. Some generic methods are studied. The proposed algorithms can be implemented in real-time. Approaches are based on an affine non-linear model whose control explicitly appears. Two control methods are considered: a predictive control and an optimal control. Since predictive control is a good choice for tracking, it maintains the system in a cycle. Optimal control yields solutions that can be applied to transients. Some experiments applied to the power converters are shown.
He was born in Manizales Colombia. Author of several articles. He is electronic engineer from la Universidad Nacional. He got his Master Degree at la Universidad de Los Andes(Bogota). He has a Ph.D. in automatic control from Nancy University, France. Currently, he works as full-time professor at Pontificia Universidad Javeriana, Bogota, Colombia.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Taschenbuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This work deals with limit cycle control for one particular class of hybrid dynamical systems (HDS): The cyclic switched systems. HDS were born because the traditional dynamical models were not able to describe complex behaviours (behaviours with discontinuities). From an application point of view, one important class of HDS depicts a cyclic behaviour in steady state. Its main characteristic is that a control that maintains the system on a desired operation point does not exist. However, this point can be obtained in average. Thus, a cycle is produced by switching among the system modes. A control law must satisfy stability and dynamical performance. Moreover, criteria related to the waveform must be verified. Some generic methods are studied. The proposed algorithms can be implemented in real-time. Approaches are based on an affine non-linear model whose control explicitly appears. Two control methods are considered: a predictive control and an optimal control. Since predictive control is a good choice for tracking, it maintains the system in a cycle. Optimal control yields solutions that can be applied to transients. Some experiments applied to the power converters are shown. 172 pp. Englisch. N° de réf. du vendeur 9783838302522
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Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. This work deals with limit cycle control for one particular class of hybrid dynamical systems (HDS): The cyclic switched systems. HDS were born because the traditional dynamical models were not able to describe complex behaviours (behaviours with discontinu. N° de réf. du vendeur 5410992
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Taschenbuch. Etat : Neu. Control of limit cycles in hybrid dynamical systems | An introduction to cyclic switched systems. Application to power converters | Diego Alejandro Patino Guevara | Taschenbuch | 172 S. | Englisch | 2009 | LAP LAMBERT Academic Publishing | EAN 9783838302522 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. N° de réf. du vendeur 101539334
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Taschenbuch. Etat : Neu. This item is printed on demand - Print on Demand Titel. Neuware -This work deals with limit cycle control for one particular class of hybrid dynamical systems (HDS): The cyclic switched systems. HDS were born because the traditional dynamical models were not able to describe complex behaviours (behaviours with discontinuities). From an application point of view, one important class of HDS depicts a cyclic behaviour in steady state. Its main characteristic is that a control that maintains the system on a desired operation point does not exist. However, this point can be obtained in average. Thus, a cycle is produced by switching among the system modes. A control law must satisfy stability and dynamical performance. Moreover, criteria related to the waveform must be verified. Some generic methods are studied. The proposed algorithms can be implemented in real-time. Approaches are based on an affine non-linear model whose control explicitly appears. Two control methods are considered: a predictive control and an optimal control. Since predictive control is a good choice for tracking, it maintains the system in a cycle. Optimal control yields solutions that can be applied to transients. Some experiments applied to the power converters are shown.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 172 pp. Englisch. N° de réf. du vendeur 9783838302522
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This work deals with limit cycle control for one particular class of hybrid dynamical systems (HDS): The cyclic switched systems. HDS were born because the traditional dynamical models were not able to describe complex behaviours (behaviours with discontinuities). From an application point of view, one important class of HDS depicts a cyclic behaviour in steady state. Its main characteristic is that a control that maintains the system on a desired operation point does not exist. However, this point can be obtained in average. Thus, a cycle is produced by switching among the system modes. A control law must satisfy stability and dynamical performance. Moreover, criteria related to the waveform must be verified. Some generic methods are studied. The proposed algorithms can be implemented in real-time. Approaches are based on an affine non-linear model whose control explicitly appears. Two control methods are considered: a predictive control and an optimal control. Since predictive control is a good choice for tracking, it maintains the system in a cycle. Optimal control yields solutions that can be applied to transients. Some experiments applied to the power converters are shown. N° de réf. du vendeur 9783838302522
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Etat : Hervorragend. Zustand: Hervorragend | Sprache: Englisch | Produktart: Bücher | This work deals with limit cycle control for one particular class of hybrid dynamical systems (HDS): The cyclic switched systems. HDS were born because the traditional dynamical models were not able to describe complex behaviours (behaviours with discontinuities). From an application point of view, one important class of HDS depicts a cyclic behaviour in steady state. Its main characteristic is that a control that maintains the system on a desired operation point does not exist. However, this point can be obtained in average. Thus, a cycle is produced by switching among the system modes. A control law must satisfy stability and dynamical performance. Moreover, criteria related to the waveform must be verified. Some generic methods are studied. The proposed algorithms can be implemented in real-time. Approaches are based on an affine non-linear model whose control explicitly appears. Two control methods are considered: a predictive control and an optimal control. Since predictive control is a good choice for tracking, it maintains the system in a cycle. Optimal control yields solutions that can be applied to transients. Some experiments applied to the power converters are shown. N° de réf. du vendeur 5494202/1
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