SPHERES Tethered Formation Flight Testbed: Application to NASA’s SPECS Mission
نویسندگان
چکیده
This paper elaborates on theory and experiment of the formation flight control for the future space-borne tethered interferometers. The nonlinear equations of multi-vehicle tethered spacecraft system are derived by Lagrange equations and decoupling method. The preliminary analysis predicts unstable dynamics depending on the direction of the tether motor. The controllability analysis indicates that both array resizing and spin-up are fully controllable only by the reaction wheels and the tether motor, thereby eliminating the need for thrusters. Linear and nonlinear decentralized control techniques have been implemented into the tethered SPHERES testbed, and tested at the NASA MSFC’s flat floor facility using two and three SPHERES configurations. The nonlinear control using feedback linearization technique performed successfully in both two SPHERES in-line configuration and three triangular configuration while varying the tether length. The relative metrology system, using the ultra sound metrology system and the inertial sensors as well as the decentralized nonlinear estimator, is developed to provide necessary state information.
منابع مشابه
SPHERES: Development of an ISS Laboratory for Formation Flight and Docking Research
1 0-7803-7231-X/01/$10.00/© 2002 IEEE 2 IEEEAC paper #081, Updated December 5, 2001 Abstract—The MIT Space Systems Laboratory (SSL) is developing the SPHERES formation flight testbed to provide multiple investigators with a long term, replenishable, and upgradable testbed for the validation of high risk metrology, control, and autonomy technologies. These technologies are critical to the operat...
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The MIT Space Systems Laboratory is developing the SPHERES formation flight testbed to provide multiple investigators with a long term, replenishable, and upgradable testbed for the validation of high risk metrology, control, and autonomy technologies. These core technologies enable distributed satellite and docking missions such as TechSat21, Starlight, Terrestrial Planet Finder, and Orbital E...
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