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Direct synthesis of reduced order H controllers for a class of multivariable plants
Authors:Falguni Gopmandal  Arun Ghosh
Abstract:Given an nth order, urn:x-wiley:rnc:media:rnc5819:rnc5819-math-0004-control input, p-measured output generalized plant, this article proposes a simple, direct approach to design an output feedback Hurn:x-wiley:rnc:media:rnc5819:rnc5819-math-0005 controller with order urn:x-wiley:rnc:media:rnc5819:rnc5819-math-0006 satisfying urn:x-wiley:rnc:media:rnc5819:rnc5819-math-0007 for urn:x-wiley:rnc:media:rnc5819:rnc5819-math-0008, or urn:x-wiley:rnc:media:rnc5819:rnc5819-math-0009 for urn:x-wiley:rnc:media:rnc5819:rnc5819-math-0010. For this purpose, the output feedback Hurn:x-wiley:rnc:media:rnc5819:rnc5819-math-0011 control problem is transformed into an Hurn:x-wiley:rnc:media:rnc5819:rnc5819-math-0012 state feedback problem for an augmented generalized system. A class of plants for which this transformation always exists and the ensuing controller has order as above, is identified. As a result, for such plants, the reduced order Hurn:x-wiley:rnc:media:rnc5819:rnc5819-math-0013 controller gains are found just by solving a simple linear matrix inequality problem used in state feedback based Hurn:x-wiley:rnc:media:rnc5819:rnc5819-math-0014 control. The efficacy of the proposed approach is studied on some benchmark examples.
Keywords:LMI-based non-iterative design  reduced order H control  state feedback based transformation
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