Acceleration Measurement-Free Dissipative Disturbance Observer for Robotic Manipulators

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초록

In this letter, we propose an Acceleration Measurement-Free Dissipative Disturbance Observer (AFDDO) for robotic manipulators, designed to estimate external disturbances robustly without requiring angular acceleration measurements and matrix inversion. By leveraging dissipativity theory, the AFDDO achieves enhanced robustness and stability against fast-varying disturbances. A linear matrix inequality (LMI)-based approach is employed for observer gain tuning, enabling efficient computation and control of observer bandwidth. Unlike conventional methods, the AFDDO eliminates the need for matrix inversion and utilizes generalized momentum to maintain an acceleration measurement-free condition. The proposed observer was validated through simulations and experiments using a mini-hydraulic excavator, demonstrating superior performance in disturbance estimation compared to existing nonlinear disturbance observers.

키워드

Robots; Manipulator dynamics; Disturbance observers; Accelerometers; Robot sensing systems; Vectors; Mathematical models; Torque; Stability analysis; Robustness; Force and tactile sensing; force control; sensor fusion; hydraulic/pneumatic actuators; H-INFINITY; SYSTEMS; DESIGN; KALMAN; MODEL
제목
Acceleration Measurement-Free Dissipative Disturbance Observer for Robotic Manipulators
저자
Kim, Seonwoo; Kim, Chanwoo; Ko, Yeonho; Hong, Daehie
DOI
10.1109/LRA.2025.3564205
발행일
2025-06
유형
Article
저널명
IEEE Robotics and Automation Letters
권
10
호
6
페이지
5999 ~ 6006