165   Artículos

 
en línea
Kamal Rsetam, Yusai Zheng, Zhenwei Cao and Zhihong Man    
In this paper, an adaptive active disturbance rejection control is newly designed for precise angular steering position tracking of the uncertain and nonlinear SBW system with time delay communications. The proposed adaptive active disturbance rejection ... ver más
Revista: Applied System Innovation    Formato: Electrónico

 
en línea
Tianlei Fu, Lianwu Guan, Yanbin Gao and Chao Qin    
This paper investigates an anticipatory activation anti-windup approach based on Linear Active Disturbance Rejection Control (LADRC) to address the influences of accelerated saturation on the actuators in a Miniaturized Inertial Stabilized Platform (MISP... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Bowen Sui, Jianqiang Zhang, Zhong Liu and Junbao Wei    
This paper proposes a fixed-time prescribed performance control technique to address the challenge of precise trajectory tracking control for unmanned surface vessels (USVs) in the presence of external time-varying disturbances and input saturation. To b... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Omar Hernández-González, Felipe Ramírez-Rasgado, Mondher Farza, María-Eusebia Guerrero-Sánchez, Carlos-Manuel Astorga-Zaragoza, Mohammed M?Saad and Guillermo Valencia-Palomo    
This paper deals with the problem of the estimation of non-uniformly nonlinear systems with time-varying delays in the state and input. In addition, the problem of the sampled output measurement is also been addressed. Thus, an observer design for a clas... ver más
Revista: Aerospace    Formato: Electrónico

 
en línea
Hang Ding, Dongdong Wang, Chuanjun Li, Xiao Liang and Xingcheng Li    
The target can deceive the flight vehicle by releasing an infrared decoy to make the line-of-sight (LOS) angle rate deflect greatly, thus causing the flight vehicle to miss the target. Therefore, in order to accurately strike the target in complex advers... ver más
Revista: Aerospace    Formato: Electrónico

 
en línea
Xudong Han, Yongling Fu, Yan Wang, Mingkang Wang and Deming Zhu    
The control accuracy and stability of the electrohydrostatic actuator (EHA) are directly impacted by parameter uncertainty, disturbance uncertainty, and non-matching disturbance, which negatively impacts aircraft rudder maneuvering performance and even r... ver más
Revista: Aerospace    Formato: Electrónico

 
en línea
Shuaihe Zhao, Yuanqing Xia, Liqun Ma and Hongjiu Yang    
The quadrotor Unmanned Aerial Vehicle (UAV) belongs to an open-loop unstable nonlinear system, which also has the characteristics of underdrive, strong coupling and external disturbance. In the height control of quadrotor UAVs, the traditional sliding mo... ver más
Revista: Applied Sciences    Formato: Electrónico

 
en línea
Yuyang Huang, Wei Li, Jun Ning and Zhihui Li    
This paper investigates the cooperative formation trajectory tracking problem for heterogeneous unmanned aerial vehicle (UAV) and multiple unmanned surface vessel (USV) systems with collision avoidance performance. Firstly, a formation control protocol b... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Yuchao Wang, Yinsong Qu, Shiquan Zhao, Ricardo Cajo and Huixuan Fu    
In this paper, a solution to the problem of following a curved path for underactuated unmanned surface vehicles (USVs) with unknown sideslip angle and model uncertainties is studied. A novel smooth sliding mode control (SSMC) based on a finite-time exten... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

 
en línea
Mingyao Zhang, Zheping Yan, Jiajia Zhou and Lidong Yue    
This paper focuses on the collision-free formation tracking of autonomous underwater vehicles (AUVs) with compound disturbances in complex ocean environments. We propose a novel finite-time extended state observer (FTESO)-based distributed dual closed-lo... ver más
Revista: Journal of Marine Science and Engineering    Formato: Electrónico

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