Fractional order integral is introduced into active disturbance rejection controller (ADRC) to establish the structure of fractional order proportional integral controller (FPI). Fractional order ADRC (FADRC) is designed by replacing the nonlinear state error feedback control law using nonlinear function combination in ADRC with FPI, which can combine the high performance of ADRC estimating disturbances with the characteristics of fractional order calculus more really describing the physical object and spreading the stable region of the system parameters. The proposed FADRC is applied to permanent magnet synchronous motor (PMSM) speed servo system in order to improve robustness of system against the disturbances. Compared with ADRC, simulat...
In recent years, energy saving research activities have focused on electric motors and their systems...
Abstract — A fractional-order [proportional derivative] (FO-[PD]) controller is proposed for robust ...
One of the key issues in control design for Active Magnetic Bearing (AMB) systems is the tradeoff be...
In this paper, a fractional-order active disturbance rejection controller (FOADRC), combining a frac...
A fractional active disturbance rejection control (FADRC) scheme is proposed to improve the performa...
The time-domain approximation of the Grünwald–Letnikov fractional derivative is intuitive and widely...
Permanent Magnet Synchronous Motor (PMSM) is a special type of brushless motor widely used for high-...
A fractional order sliding mode control with PIDsliding surface design (FOSMC-PID) is proposed in th...
Fractional order calculus has become a growing area in the field of control theory. This phenomenon ...
© 2014 IEEE.This paper focuses on a design method for feedback and feedforward fractional order cont...
This paper proposes the fractional-order proportional integral derivative (FOPID) controller, as a s...
In this paper, a disturbance observer-based complementary fractional-order sliding mode control (CFO...
A simplified fractional order PID (FOPID) controller is proposed by the suitable definition of the p...
Fractional order sliding mode control has been applied for speed control of PMSM. However, in many p...
In this paper a novel Hybrid Differential Artificial Bee Colony Algorithm (HDABCA) has been proposed...
In recent years, energy saving research activities have focused on electric motors and their systems...
Abstract — A fractional-order [proportional derivative] (FO-[PD]) controller is proposed for robust ...
One of the key issues in control design for Active Magnetic Bearing (AMB) systems is the tradeoff be...
In this paper, a fractional-order active disturbance rejection controller (FOADRC), combining a frac...
A fractional active disturbance rejection control (FADRC) scheme is proposed to improve the performa...
The time-domain approximation of the Grünwald–Letnikov fractional derivative is intuitive and widely...
Permanent Magnet Synchronous Motor (PMSM) is a special type of brushless motor widely used for high-...
A fractional order sliding mode control with PIDsliding surface design (FOSMC-PID) is proposed in th...
Fractional order calculus has become a growing area in the field of control theory. This phenomenon ...
© 2014 IEEE.This paper focuses on a design method for feedback and feedforward fractional order cont...
This paper proposes the fractional-order proportional integral derivative (FOPID) controller, as a s...
In this paper, a disturbance observer-based complementary fractional-order sliding mode control (CFO...
A simplified fractional order PID (FOPID) controller is proposed by the suitable definition of the p...
Fractional order sliding mode control has been applied for speed control of PMSM. However, in many p...
In this paper a novel Hybrid Differential Artificial Bee Colony Algorithm (HDABCA) has been proposed...
In recent years, energy saving research activities have focused on electric motors and their systems...
Abstract — A fractional-order [proportional derivative] (FO-[PD]) controller is proposed for robust ...
One of the key issues in control design for Active Magnetic Bearing (AMB) systems is the tradeoff be...