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 configurati...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
Abstract - The SPHERES Tether project of the MIT Space Systems Lab (MIT-SSL) is working in support o...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
This paper elaborates on theory and experiment of the formation flight control for the future space-...
This paper elaborates on theory and experiment of the formation flight control for the future space-...
This paper reports on efforts to control a tethered formation flight spacecraft array for NASA's SPE...
This paper reports on efforts to control a tethered formation flight spacecraft array for NASA's SPE...
This paper elaborates on the theory and experiment of controlling tethered spacecraft formation with...
This paper elaborates on the theory and experiment of controlling tethered spacecraft formation with...
We introduce a decentralized attitude control strategy that can dramatically reduce the usage of pro...
This paper elaborates on the theory and experiment of controlling tethered spacecraft formation with...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
We introduce a decentralized attitude control strategy that can dramatically reduce the usage of pro...
Abstract - The SPHERES Tether project of the MIT Space Systems Lab (MIT-SSL) is working in support o...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
Abstract - The SPHERES Tether project of the MIT Space Systems Lab (MIT-SSL) is working in support o...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
This paper elaborates on theory and experiment of the formation flight control for the future space-...
This paper elaborates on theory and experiment of the formation flight control for the future space-...
This paper reports on efforts to control a tethered formation flight spacecraft array for NASA's SPE...
This paper reports on efforts to control a tethered formation flight spacecraft array for NASA's SPE...
This paper elaborates on the theory and experiment of controlling tethered spacecraft formation with...
This paper elaborates on the theory and experiment of controlling tethered spacecraft formation with...
We introduce a decentralized attitude control strategy that can dramatically reduce the usage of pro...
This paper elaborates on the theory and experiment of controlling tethered spacecraft formation with...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
We introduce a decentralized attitude control strategy that can dramatically reduce the usage of pro...
Abstract - The SPHERES Tether project of the MIT Space Systems Lab (MIT-SSL) is working in support o...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...
Abstract - The SPHERES Tether project of the MIT Space Systems Lab (MIT-SSL) is working in support o...
This paper describes a fully decentralized nonlinear control law for spinning tethered formation fli...