Distributed sensor/actuator design for plates: Spatial shape and shading as design parameters

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Abstract

This paper will discuss two-dimensional distributed transducer shape and shading and their implications for the active control of plates. Two-dimensional transducer shaping is shown to be a useful design tool for the control problem. In addition, transducer shaping can be combined with gain-weighting to provide close approximation of continuously shaded transducer distributions. An optimization method is described which can be used to fit the approximation to a continuous distribution. The analysis is applied to two examples of transducers used to control a rectangular, simply-supported plate. The first relies on shaping alone and is shown to spatially filter out the even-even modes. The second was developed using the optimization technique and is shown to provide "all-mode" controllability and observability. © 1997 Academic Press Limited.

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Sullivan, J. M., Hubbard, J. E., & Burke, S. E. (1997). Distributed sensor/actuator design for plates: Spatial shape and shading as design parameters. Journal of Sound and Vibration, 203(3), 473–493. https://doi.org/10.1006/jsvi.1996.0877

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