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contributor authorA. J. Hazell
contributor authorD. J. N. Limebeer
date accessioned2017-05-09T00:37:06Z
date available2017-05-09T00:37:06Z
date copyrightMay, 2010
date issued2010
identifier issn0022-0434
identifier otherJDSMAA-26520#031005_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/142870
description abstractThe purpose of this paper is to provide a set of synthesis and design tools for a wide class of H2 preview control systems. A generic preview design problem, which features both previewable and nonpreviewable disturbances, is embedded in a standard generalized regulator framework. Preview regulation is accomplished by a two-degrees-of-freedom output-feedback controller. A number of theoretical issues are studied, including the efficient solution of the standard H2 full-information Riccati equation and the efficient evaluation of the full-information preview gain matrices. The full-information problem is then extended to include the efficient implementation of the output-feedback controller. The synthesis of feedforward controllers with preview is analyzed as a special case—this problem is of interest to designers who wish to introduce preview as a separate part of a system design. The way in which preview reduces the H2-norm of the closed-loop system is analyzed in detail. Closed-loop norm reduction formulas provide a systematic way of establishing how much preview is required to solve a particular problem, and determine when extending the preview horizon will not produce worthwhile benefits. The paper concludes with a summary of the main features of preview control, as well as some controller design insights. New application examples are introduced by reference.
publisherThe American Society of Mechanical Engineers (ASME)
titleA Framework for Discrete-Time H2 Preview Control
typeJournal Paper
journal volume132
journal issue3
journal titleJournal of Dynamic Systems, Measurement, and Control
identifier doi10.1115/1.4000810
journal fristpage31005
identifier eissn1528-9028
treeJournal of Dynamic Systems, Measurement, and Control:;2010:;volume( 132 ):;issue: 003
contenttypeFulltext


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