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Attitude Control of Rigid Body Dynamics From Biased IMU Measurements

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Authors

Pounds, Paul
Hamel, Tarek
Mahony, Robert

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Institute of Electrical and Electronics Engineers (IEEE Inc)

Abstract

Commercially viable aerial robotic vehicles require low-cost attitude stabilisation systems that are robust to noise and sensor bias. A typical attitude stabilisation system consists of MEMs accelerometers, gyroscopes linked to separate attitude estimator and attitude controller algorithms. This paper proposes a non-linear attitude stabiliser for low-cost aerial robotic vehicles that combines attitude and bias estimation with control. The attitude control algorithm is based on a non-linear control Lyapunov function analysis derived directly in terms of the rigid-body attitude dynamics and measurement signals.

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Proceedings of the 46th IEEE Conference on Decision and Control 2007

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Restricted until

2037-12-31