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High Steady-State Accuracy Pneumatic Servo Positioning System with PVA/PV Control and Friction Compensation

Abstract

Pneumatic servo actuators have the benefits of low-cost, cleanliness and a high power-to-weight ratio. How-ever, their relatively poor accuracy prevents them from competing with electro-mechanical systems when higher accuracy is needed. The cause of the steady-state error for a pneumatic servo system with an open-center servo valve is investigated. Full nonlinear and linearized plant models are presented. An effective friction compensation method is introduced which can be added to any control strategy. When combined with a novel PV AfPV control approach, a steady-state accuracy of ±O. Olmm has been verified in experiments. This is a tenfold improvement over previously reported experimental results for such systems. This performance is achieved for both vertical. and horizontal movements with payloads ranging from 0.3 to 11.3 kg, without re-tuning the controller.

Authors

Ning S; Bone GM

Volume

3

Pagination

pp. 2824-2829

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Publication Date

January 1, 2002

DOI

10.1109/robot.2002.1013660

Name of conference

Proceedings 2002 IEEE International Conference on Robotics and Automation (Cat. No.02CH37292)
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