dc.creatorSilva Junior, Joao Manoel Gomes da
dc.creatorTarbouriech, Sophie
dc.date2011-01-28T05:59:09Z
dc.date2005
dc.identifier0018-9286
dc.identifierhttp://hdl.handle.net/10183/27579
dc.identifier000469593
dc.descriptionThis note addresses the design of antiwindup gains for obtaining larger regions of stability for linear systems with saturating inputs. Considering that a linear dynamic output feedback has been designed to stabilize the linear system (without saturation), a method is proposed for designing an antiwindup gain that maximizes an estimate of the basin of attraction of the closed-loop system. It is shown that the closed-loop system obtained from the controller plus the antiwindup gain can be modeled by a linear system with a deadzone nonlinearity. A modified sector condition is then used to obtain stability conditions based on quadratic Lyapunov functions. Differently from previousworks these conditions are directly in linear matrix inequality form. Some numerical examples illustrate the effectiveness of the proposed design technique when compared with the previous ones.
dc.formatapplication/pdf
dc.languageeng
dc.relationIEEE transactions on automatic control. vol. 50, no.1 (Jan. 2005), p. 106-111
dc.rightsOpen Access
dc.subjectActuator saturation
dc.subjectAntiwindup
dc.subjectLinear matrix inequality (LMI)
dc.subjectStability
dc.subjectControle automático : Estabilidade
dc.subjectSistemas lineares : Estabilidade
dc.titleAntiwindup design with guaranteed regions of stability : an LMI-based approach
dc.typeArtigo de periódico
dc.typeEstrangeiro


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