Proceedings Article10.1117/12.317128
Interferometry program flight experiments: IPEX I and II
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TL;DR: The interferometry program experiment (IPEX) I and II are a series of flight experiments designed to characterize micro-dynamics of structures in space as mentioned in this paper, which is needed to characterize uncontrollable high frequency disturbances, and to validate structural designs and modeling approaches for joint-dominated extruding structures.
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Abstract: The interferometry program experiment (IPEX) I and II are a series of flight experiments designed to characterize microdynamics of structures in space. These technology demonstration flight experiments are precursors to the Space Interferometry Mission (SIM), Next Generation Space Telescope (NGST) and Terrestrial Planet Finder (TPF), and will address the missions' nanometer-level structural stability requirements. Of particular interest is potential thermal snapping when space structures undergo rapid thermal variations, such as a sun-to-shade transition. This information is needed to characterize uncontrollable high frequency disturbances, and to validate structural designs and modeling approaches for joint-dominated extruding structures. Another objective of the experiments is to characterize typical mechanical disturbances of spacecraft while on-orbit for the purpose of modeling and disturbance response prediction for future optical space missions. Both experiments are performed on the German DARA/DASA free- flying platform Astro-Spas, which is sorted out of the shuttle and retrieved after an independent 10-day mission. IPEX-I, performed during the STS-80 mission in December 1996, characterized the on-board dynamics of the spacecraft during normal operations and quiescent periods. IPEX-II, performed during the STS-85 mission in August 1997, monitored the microdynamic behavior of a representative 9- bay AEC-ABLE mast. The flight data demonstrates the existence of transient microdynamic events that are correlated with temperature transitions. However, the overall spacecraft flight disturbances and broadband boom stability meet the requirements of precision space optical systems.
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Citations
•Dissertation
Performance assessment and enhancement of precision controlled structures during conceptual design
Homero L. Gutierrez
- 01 Jan 1999
TL;DR: Thesis (Ph.D.) as mentioned in this paper, Mass. Institute of Technology, Dept. of Aeronautics and Astronautics, 1999, Boston, MA, USA.
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Review on thermal and mechanical challenges in the development of deployable space optics
TL;DR: The thermomechanical challenges that should be taken into consideration when designing optical space systems, as well as 14 projects proposed to address them, are compiled.
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Microdynamic Design Requirements for Large Space Structures
Lee D. Peterson,Jason D. Hinkle +1 more
- 07 Apr 2003
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Nanometer scale spontaneous vibrations in a deployable truss under mechanical loading
TL;DR: In this article, the authors reported spontaneous vibrations of a deployable spacecraft structure at optical levels of motion under mechanical loads, and the response spectra of the vibrations occurred in narrow bandwidths around the dominant modal frequencies of the structure.
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