NASA NTRS · 20010071575
Glovebox Integrated Microgravity Isolation Technology (g-LIMIT): A Linearized State-Space Model
Abstract
Vibration acceleration levels on large space platforms exceed the requirements of many space experiments. The Glovebox Integrated Microgravity Isolation Technology (g-LIMIT) is being built by the NASA Marshall Space Flight Center to attenuate these disturbances to acceptable levels. G-LIMIT uses Lorentz (voice-coil) magnetic actuators to levitate and isolate payloads at the individual experiment/sub-experiment (versus rack) level. Payload acceleration, relative position, and relative orientation measurements are fed to a state-space controller. The controller, in turn, determines the actuator Currents needed for effective experiment isolation. This paper presents the development of an algebraic, state-space model of g-LIMIT, in a form suitable for optimal controller design. The equations are first derived using Newton's Second Law directly, then simplified to a linear form for the purpose of controller design.
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Hampton, R. David, Calhoun, Philip C., Whorton, Mark S.. 2001-01-22. Glovebox Integrated Microgravity Isolation Technology (g-LIMIT): A Linearized State-Space Model. https://ntrs.nasa.gov/citations/20010071575
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