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A control scheme for the motion of a magnet supported by type-II superconductor

โœ Scribed by Ricardo Femat


Book ID
104297417
Publisher
Elsevier Science
Year
1998
Tongue
English
Weight
640 KB
Volume
111
Category
Article
ISSN
0167-2789

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โœฆ Synopsis


Levitation systems including superconducting effects constitute a theoretically interesting and practically important class of magnetic suspension. The dynamics of such systems can be described by a second-order nonlinear ordinary differential equation, which involves a hysteresis and stiffness function. In this work, the design of a continuous robust strategy to control the motion of superconducting magnetic levitation with least prior knowledge is presented by assuming that exact model of the levitation system and external excitation force are not known. Controller comprises a linearizing-like feedback (i.e., the controller induces an input-output linear behavior in the motion of the levitation system) and an uncertainty estimator. Simulations are provided to illustrate the performance of the proposed controller.


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## II An NMR spin echo measurement of driven vortex molaon in a type II superconductor is reported The effect ,~f vortex displacement during the measurement is to reduce the spin echo amplitude. A model for the effect is used to obtain the penetration depth (A) of multifilament NbTt alloy wire as