Localized Vibration Isolation Strategy for Low-Frequency Excitations in Membrane Space Structures

Author:

Sakamoto Hiraku1,Park K. C.1

Affiliation:

1. Center for Aerospace Structures, Department of Aerospace Engineering Sciences, University of Colorado, Boulder, CO 80309-0429

Abstract

The present study explores both structural and controller design to attenuate vibration in large membrane space structures, especially due to low-frequency harmonic excitations. It is very difficult for membrane structures to suppress the low-frequency vibration induced by flexible support structures, because a lightly prestressed membrane has extremely low mode frequencies and little damping effect. The present study proposes the use of weblike perimeter cables around a membrane, and the application of simple and lightweight active controllers only along the web cables in order to isolate the membrane from vibration. This strategy successfully reduces the membrane vibration when the web-cable configuration is appropriately tailored. Both linear and nonlinear finite-element analyses exhibit a clear tradeoff between structural mass and control efficiency.

Publisher

ASME International

Subject

General Engineering

Reference19 articles.

1. Sakamoto, H., Park, K. C., and Miyazaki, Y. “Distributed and Localized Active Vibration Isolation in Membrane Structures,” J. Spacecr. Rockets, in press.

2. Park, K. C., and Kim, N., 1998, “A Theory of Localized Vibration Control via Partitioned LQR Synthesis,” Center for Aerospace Structures, University of Colorado at Boulder, CU-CAS-98-13.

3. Sakamoto, H., Miyazaki, Y, and Park, K. C., 2003, “Evaluation of Cable Suspended Membrane Structures for Wrinkle-Free Design,” AIAA Paper 2003–1905.

4. Sakamoto, H., and Park, K. C., 2005, “Design Parameter Effects for Wrinkle Reduction in Membrane Space Structures,” AIAA Paper 2005–1974.

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