This paper introduces self-adaptive fuzzy PID controller to improve static and dynamic performance of magnetic suspension systems aiming at the characteristics of nonlinearity, hysteresis and uncertain model of the systems. The simulation results demonstrate that this fuzzy self-adaptive PID controller is more precise and less time-consuming for convergence, when uncertain parameters and disturbances exist at the same time, the system obtains better robust and stronger anti-interference ability
Based on parameter self-tuning fuzzy PID controller, a fuzzy inference method is utilized to realize...
Flexible load is widely used in servo systems, and will cause nonlinear displacement and vibration o...
This paper presents a development of a self-tuning fuzzy PID controller to overcome the appearance o...
<p> A new method based on fuzzy self-adaptive PID for the galvanometer control system is presented....
This paper analyzes the structure principle of the actuator simulated loading system with variable s...
Magnetic suspension technology has been a promising method to achieve contactless movement, and its ...
Abstract—The permanent magnet brushless DC (BLDC) motor is a typical Multiple variables, nonlinear s...
Abstract:- This paper deals with the experimental control of a rotating active magnetic bearing (AMB...
This paper introduced the permanent magnet synchronous motor mathematical model, using the vector co...
In the paper, an adaptive control MRAS-based structure for nonlinear two-mass system is proposed. Th...
In this paper, we consider a class of uncertain magnetic suspension system preceded by Bouc-Wen type...
In this paper, we will compare the closed loop control performance of interval type-2 fuzzy PID cont...
A quarter-car dynamic system has been modeled using Magnetorheological (MR) damper and a parallel st...
We first analyze the effect of network-induced delay on the stability of networked control systems (...
The purpose of the study is to develop an adaptive electropneumatic automatic system based on the cl...
Based on parameter self-tuning fuzzy PID controller, a fuzzy inference method is utilized to realize...
Flexible load is widely used in servo systems, and will cause nonlinear displacement and vibration o...
This paper presents a development of a self-tuning fuzzy PID controller to overcome the appearance o...
<p> A new method based on fuzzy self-adaptive PID for the galvanometer control system is presented....
This paper analyzes the structure principle of the actuator simulated loading system with variable s...
Magnetic suspension technology has been a promising method to achieve contactless movement, and its ...
Abstract—The permanent magnet brushless DC (BLDC) motor is a typical Multiple variables, nonlinear s...
Abstract:- This paper deals with the experimental control of a rotating active magnetic bearing (AMB...
This paper introduced the permanent magnet synchronous motor mathematical model, using the vector co...
In the paper, an adaptive control MRAS-based structure for nonlinear two-mass system is proposed. Th...
In this paper, we consider a class of uncertain magnetic suspension system preceded by Bouc-Wen type...
In this paper, we will compare the closed loop control performance of interval type-2 fuzzy PID cont...
A quarter-car dynamic system has been modeled using Magnetorheological (MR) damper and a parallel st...
We first analyze the effect of network-induced delay on the stability of networked control systems (...
The purpose of the study is to develop an adaptive electropneumatic automatic system based on the cl...
Based on parameter self-tuning fuzzy PID controller, a fuzzy inference method is utilized to realize...
Flexible load is widely used in servo systems, and will cause nonlinear displacement and vibration o...
This paper presents a development of a self-tuning fuzzy PID controller to overcome the appearance o...