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Model and controller reduction of large-scale structures based on projection methodsGildin, Eduardo, January 1900 (has links) (PDF)
Thesis (Ph. D.)--University of Texas at Austin, 2006. / Vita. Includes bibliographical references.
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Model and controller reduction of large-scale structures based on projection methodsGildin, Eduardo 28 August 2008 (has links)
Not available / text
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Analytical and experimental study of control effort associated with model reference adaptive control /Messer, Richard Scott, January 1992 (has links)
Thesis (Ph. D.)--Virginia Polytechnic Institute and State University, 1992. / Vita. Abstract. Includes bibliographical references (leaves 144-148). Also available via the Internet.
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Identification and control of lightly damped, large space structures : an experimental evaluation /Berg, Joel Lea, January 1992 (has links)
Thesis (Ph. D.)--Virginia Polytechnic Institute and State University, 1992. / Vita. Abstract. Includes bibliographical references (leaves 259-271). Also available via the Internet.
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Application of H(infinity) optimal control to large space structuresKing, James Allen. January 1990 (has links)
Thesis (M.S.)--Ohio University, March, 1990. / Title from PDF t.p.
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Multi-input, multi-output system identification from frequency response samples with applications to the modeling of large space structuresMedina B., Enrique Antonio. January 1991 (has links)
Thesis (M.S.)--Ohio University, November, 1991. / Title from PDF t.p.
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Suboptimal control of large flexible space structures with discrete nonlinear partsLink, Gregory P. 05 1900 (has links)
No description available.
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Evolving systems control and stability inheritance in self-assembling structures /Frost, Susan A. January 2008 (has links)
Thesis (Ph.D.)--University of Wyoming, 2008. / Title from PDF title page (viewed on Apr. 2, 2010). Includes bibliographical references (p. 135-139).
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Sampled-data frequency response system identification for large space structuresHammond, Thomas T. January 1988 (has links)
No description available.
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Decentralized control of large space structures:an overviewReichard, Karl Martin 12 June 2010 (has links)
This thesis examines several techniques for the design of decentralized control strategies for the active control of vibrational damping in large space structures. A brief description of the finite element method is presented to explain the derivation of mathematical models of flexible structures represented by systems of linear second-order ordinary differential equations. The fundamental ideas of modal analysis are introduced to explain the concepts of vibrational modes and mode shapes, and derive the modal coordinate state space representation of flexible structures.
The decentralized fixed modes of a system are defined, and several important characterizations of decentralized fixed modes are presented. Alternate characterizations of fixed modes yield additional insight into the nature: of fixed modes and often provide new methods for calculating the fixed modes of a system.
The use of collocated rate feedback for robust vibrational damping control is described. It is shown that the robustness of collocated rate feedback is due to the positivity of large space structures, an extension of the mathematical concept of positive real functions to dynamic systems.
Another strategy for the control of vibrational damping in large space structures, known as uniform damping control, is also described. It is shown that compared to collocated rate feedback, uniform damping control achieves increased performance at the price of decreased robustness at low frequencies.
The application of decomposition techniques to the design of decentralized control laws is described, and a special type of decomposition known as an overlapping decomposition is introduced. It is shown how overlapping decompositions can be used to design control laws for systems for which the more familiar disjoint decomposition techniques often fail to yield satisfactory results.
Finally, these decentralized control techniques are illustrated using a model of a proposed large space structure, the NASA CO FS mast. / Master of Science
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