Publication | Closed Access
Spacecraft robust attitude tracking design: PID control approach
46
Citations
15
References
2002
Year
Unknown Venue
Nonlinear ControlEngineeringAerospace SystemsAerospace EngineeringSpacecraft ControlSpace VehiclesGuidance SystemMechanical SystemsSystems EngineeringSpacecraft Attitude ControlPid ControlControl DesignPd ControlTracking ControlSpacecraft Robust AttitudeRobustness PropertiesFlight Control SystemsSpacecraft Attitude
The paper presents a robust PID control design method for spacecraft attitude tracking. Spacecraft control for large-angle control is subject to nonlinear couplings and uncertainties. Although nonlinear robust control design methods, such as nonlinear H/sub /spl infin// control can be applied to address these issues. The solving of the associated Hamilton-Jacobi equation is often extremely complicated and the resulting controller is not easy to implement. In the paper, the PID controller architecture is assumed for the spacecraft attitude control and concepts in nonlinear H/sub /spl infin// control theory are applied to obtain robustness properties. Results of both PD control and PID control are derived and applied to the ROCSAT-3 satellite of a science model system for verification.
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