In this article, we devise a simulation tool of the dynamics of a tethered buoy, which is a mooring system consisting of a rigid floating body (buoy) connected by an elastic cable (mooring line) to the bottom of the fluid environment. The accuracy and robustness of the overall solution algorithm are
Dynamic simulation of a tethered satellite system using finite elements and fuzzy sets
โ Scribed by Michael J Leamy; Ahmed K Noor; Tamer M Wasfy
- Publisher
- Elsevier Science
- Year
- 2001
- Tongue
- English
- Weight
- 974 KB
- Volume
- 190
- Category
- Article
- ISSN
- 0045-7825
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โฆ Synopsis
Dynamic simulations are performed for the NASA planned propulsive small expendable deployer system (ProSEDS) space tether mission using two ยฎnite element analysis codes. The ยฎrst is a specialized code for simulating tethered space systems. The second is an inhouse ยฏexible multibody dynamics code adapted herein for modeling tethered satellites. The simulation of the ProSEDS mission is divided into two operations: a tether deployment operation and an electrodynamic operation. The specialized code uses a ยฎxed number of nodes and ยฎnite elements in simulating the deployment operation, while the in-house code uses a variable number of nodes and elements. The application of each approach is discussed. A fuzzy-set technique is used in conjunction with the two codes to assess the eect of parameter variations on the deployment and electrodynamic operation of the ProSEDS tether. Detailed numerical simulations reveal that the deployment operation is not sensitive to variations in material parameters, but is sensitive to variations in the initial tether ejection momentum and to controller parameters. The electrodynamic operation is found to be highly sensitive to variations in earth's magnetic ยฎeld and, to a lesser extent, variations in material and plasma parameters.
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