DocumentCode :
1026805
Title :
Microelectromechanical devices for satellite thermal control
Author :
Osiander, Robert ; Firebaugh, Samara L. ; Champion, John L. ; Farrar, Dawnielle ; Darrin, M. Ann Garrison
Author_Institution :
Appl. Phys. Lab., Johns Hopkins Univ., Laurel, MD, USA
Volume :
4
Issue :
4
fYear :
2004
Firstpage :
525
Lastpage :
531
Abstract :
Future space missions will include constellations of spacecraft, including nano- and picosatellites, where adaptive thermal control systems will be needed that fit the constraints of space applications with limited power and mass budgets. A microelectromechanical systems (MEMS) solution has been developed that will vary the emissivity on the surface of the small satellite radiator. The system is based on louver thermal controllers, where panels are mechanically positioned to modulate the effective radiator surface area. This system consists of MEMS arrays of gold-coated sliding shutters, fabricated with the Sandia ultraplanar, multilevel MEMS technology fabrication process, which utilizes multilayer polycrystalline silicon surface micromachining. The shutters can be operated independently to allow digital control of the effective emissivity. This first demonstrator technology is limited in the possible emittance range to a 40% change. Early prototypes of MEMS louvers that open away from the structure have shown the capability of a much wider dynamic range. The first generation of this active thermal management system will be demonstrated on NASA´s New Millennium Program ST-5 spacecraft. With the opportunity to validate the MEMS thermal control technology in space on ST-5, lightweight, low-power MEMS radiators offer a possibility for flexible thermal control on future nanosatellites.
Keywords :
artificial satellites; micromechanical devices; temperature control; MEMS arrays; MEMS louvers; MEMS radiators; MEMS thermal control technology; NASA New Millennium Program ST-5 spacecraft; Sandia ultra-planar multilevel MEMS technology fabrication process; active thermal management system; digital control; effective radiator surface area; emittance change; gold-coated sliding shutters; louver thermal controllers; microelectromechanical devices; multilayer polycrystalline silicon surface micromachining; nanosatellites; satellite thermal control; small satellite radiator; surface emissivity; Adaptive systems; Control systems; Lighting control; Microelectromechanical devices; Micromechanical devices; Satellites; Space missions; Space technology; Space vehicles; Thermal management; Emittance change; MEMS; microelectromechanical systems; nanosatellites; thermal control;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2004.830297
Filename :
1310346
Link To Document :
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