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タイトルActive vibration mitigation of distributed parameter, smart-type structures using Pseudo-Feedback Optimal Control (PFOC)
本文(外部サイト)http://hdl.handle.net/2060/19900000805
著者(英)Robertshaw, H. H.; Pierpont, D.; Wynn, R. H.; Patten, W. N.
著者所属(英)Virginia Polytechnic Inst. and State Univ.
発行日1989-05-01
言語eng
内容記述A new, near-optimal feedback control technique is introduced that is shown to provide excellent vibration attenuation for those distributed parameter systems that are often encountered in the areas of aeroservoelasticity and large space systems. The technique relies on a novel solution methodology for the classical optimal control problem. Specifically, the quadratic regulator control problem for a flexible vibrating structure is first cast in a weak functional form that admits an approximate solution. The necessary conditions (first-order) are then solved via a time finite-element method. The procedure produces a low dimensional, algebraic parameterization of the optimal control problem that provides a rigorous basis for a discrete controller with a first-order like hold output. Simulation has shown that the algorithm can successfully control a wide variety of plant forms including multi-input/multi-output systems and systems exhibiting significant nonlinearities. In order to firmly establish the efficacy of the algorithm, a laboratory control experiment was implemented to provide planar (bending) vibration attenuation of a highly flexible beam (with a first clamped-free mode of approximately 0.5 Hz).
NASA分類SPACECRAFT DESIGN, TESTING AND PERFORMANCE
レポートNO90N10121
権利No Copyright
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/140391


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