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A Differential Geometry Modeling Method for Wheeled Climbing Robots Tracking Control on Variable Curvature Surfaces

Ke Tan, Zeyu Gong, Bo Tao, Yuhao Zhang, Xiaoshun Liu, Ying Shi, Zhenfeng Gu, Han Ding

Year
2024
Citations
2

Abstract

Wheeled climbing robots equipped with tools can achieve high-coverage machining of large components with free-form surfaces. Trajectory tracking is the foundation for machining. However, there is a lack of a universal yet accurate model for robots while moving on variable curvature surfaces, making it difficult to guarantee tracking performance. Thus, this article proposes a universal contact frame based on differential geometry and establishes a kinematics model that uses surface parameters as state variables for robots moving on variable curvature surfaces. Based on this model, a tracking controller utilizing surface parameters error is then designed, enabling it to be applicable for tracking of climbing robots on free-form surfaces. Experiments with a wheeled climbing robot on a portion of a real wind turbine blade with a radius of more than 1.1 m demonstrate the effectiveness of the proposed method, with a root mean squared error (RMSE) of tracking accuracy of less than 1 mm.

Keywords

CurvatureRobotDifferential geometryTracking (education)ClimbingVariable (mathematics)Mobile robotDifferential (mechanical device)Computer scienceControl theory (sociology)

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