Quantized-states-based adaptive control against unknown slippage effects of uncertain mobile robots with input and state quantization

Citations

WEB OF SCIENCE

36
Citations

SCOPUS

40

초록

An adaptive tracking design strategy based on quantized state feedback is developed for uncertain nonholonomic mobile robots with unknown wheel slippage effects. All state variables and control torques are assumed to be quantized by the state and input quantizers, respectively, in a network control environment. Thus, the quantized state feedback information is only available for the tracking control design. An approximation-based adaptive controller using quantized states is recursively designed to ensure the robust adaptive tracking against unknown wheel slippage effects where the quantized-states-based adaptive mechanism is derived to compensate for unknown wheel slippage effects, system nonlinearities, and quantization errors. The boundedness of the quantization errors and estimated parameters in the closed-loop system is analyzed by presenting some theoretical lemmas. Based on these lemmas, we prove the uniform ultimate boundedness of closed-loop signals and the convergence of the trajectory tracking error in the presence of wheel slippage effects. Simulations verify the effectiveness of the resulting tracking scheme. © 2021 Elsevier Ltd

키워드

Nonholonomic mobile robots; Quantized feedback adaptive control; State and input quantization; Unknown slippage effects; Closed loop systems; Errors; Machine design; Mobile robots; State feedback; Wheels; Adaptive controllers; Estimated parameter; Feed back information; Non-holonomic mobile robots; Quantization errors; System nonlinearities; Trajectory tracking errors; Uniform ultimate boundedness; Adaptive control systems
제목
Quantized-states-based adaptive control against unknown slippage effects of uncertain mobile robots with input and state quantization
저자
Yoo, S.J.; Park, B.S.
DOI
10.1016/j.nahs.2021.101077
발행일
2021-11
유형
Article
저널명
Nonlinear Analysis: Hybrid Systems
권
42