Observer-Based Proportional-Type Controller for Two-Wheeled Mobile Robots via Simple Coordinate Transformation Technique

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6
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9

초록

This article briefs on an advanced observer-based proportional-type control scheme that stabilizes the attitude and regulates the position of two-wheeled mobile balancing robots. The robot parameter and load uncertainties are under consideration. There are three main differences from previous results: (a) the development of coordinate transformation for securing the applicability of the proposed nonlinear controller design technique, (b) the pole-zero cancellation parameter-independent observers for estimating the wheel and yaw angular velocities, and (c) the guarantees of performance recovery and offset-free properties through the replacement of integrators via observer-based disturbance observers. The practical merits of the closed-loop analysis are confirmed by performing experiments with a LEGO Mindstorms EV3 operated by MATLAB/Simulink.

키워드

Robot kinematicsWheelsRegulationAngular velocityMobile robotsMathematical modelsDynamicsTwo-wheeled balancing robotAttitude-stabilizing controlVelocity regulationCoordinate transformationObserverSLIDING-MODE CONTROLUNDERACTUATED MECHANICAL SYSTEMSPOSITION-TRACKING CONTROLLERDISTURBANCE OBSERVERINVERTED PENDULUMSTABILIZATIONVEHICLE
제목
Observer-Based Proportional-Type Controller for Two-Wheeled Mobile Robots via Simple Coordinate Transformation Technique
저자
Kim, Seok-KyoonAhn, Choon KiAgarwal, Ramesh K.
DOI
10.1109/TVT.2021.3116296
발행일
2021-11
유형
Article
저널명
IEEE Transactions on Vehicular Technology
70
11
페이지
11458 ~ 11468