ARTÍCULO
TITULO

Adaptive Integral Sliding Mode Based Course Keeping Control of Unmanned Surface Vehicle

José Antonio González-Prieto    
Carlos Pérez-Collazo and Yogang Singh    

Resumen

This paper investigates the course keeping control problem for an unmanned surface vehicle (USV) in the presence of unknown disturbances and system uncertainties. The simulation study combines two different types of sliding mode surface based control approaches due to its precise tracking and robustness against disturbances and uncertainty. Firstly, an adaptive linear sliding mode surface algorithm is applied, to keep the yaw error within the desired boundaries and then an adaptive integral non-linear sliding mode surface is explored to keep an account of the sliding mode condition. Additionally, a method to reconfigure the input parameters in order to keep settling time, yaw rate restriction and desired precision within boundary conditions is presented. The main strengths of proposed approach is simplicity, robustness with respect to external disturbances and high adaptability to static and dynamics reference courses without the need of parameter reconfiguration.

 Artículos similares

       
 
Vladimir Beliaev, Nadezhda Kunicina, Anastasija Ziravecka, Martins Bisenieks, Roberts Grants and Antons Patlins    
This article represents and compares two control systems for a vertical takeoff and landing (VTOL) unmanned aerial vehicle (UAV): a sliding proportional?integral?derivative (PID) controller and an adaptive L1 controller. The goal is to design a high-perf... ver más
Revista: Applied Sciences

 
Xin Qi, Chunyang Sheng, Yongbao Guo, Tao Su and Haixia Wang    
Aiming at the problem that online parameter identification, based on the Model Reference Adaptive System (MRAS), is easily affected by the high-frequency noise of the sensor, an improved MRAS, based on variable bandwidth linear Active Disturbance Rejecti... ver más
Revista: Applied Sciences

 
Wenxiang Yang, Yaozhen Han, Ronglin Ma, Mingdong Hou and Guang Yang    
The floating platform motion of an offshore wind turbine system can exacerbate output power fluctuations and increase fatigue loads. This paper proposes a new scheme based on a fast second-order sliding mode (SOSM) control and an adaptive super-twisting ... ver más

 
Aminurrashid Noordin, Mohd Ariffanan Mohd Basri and Zaharuddin Mohamed    
This paper presents the real-time implementation of an altitude-embedded flight controller using proportional, integral, and derivative (PID) control, adaptive PID (APID) control, and adaptive PID control with a fuzzy compensator (APIDFC) for a micro air... ver más
Revista: Aerospace

 
Ke Wang, Yong Liu, Chengwei Huang and Wei Bao    
When a cross-domain robot (CDR) flies on the water surface, the large pitch angle and roll angle may lead to water flooding into the robot cabin or even overturning. In addition, the CDR is influenced by some uncertain parameters and external disturbance... ver más
Revista: Aerospace