This paper presents a new gain scheduling speed controller of permanent magnet synchronous generators(PMSG) for MW-class direct-driven wind turbine systems. The proposed gain scheduling speed controller performs the speed tracking at more than one operating point, and the first-order torque observer estimates the turbine torque which is needed to precisely control the speed of PMSG. The proposed speed controller verifies that the PMSG can successfully follow the reference speed which is determined via the maximum power point tracking(MPPT) control and pitch control under turbulent wind conditions. The proposed speed control algorithm is simulated using Simulink and it
The article presents control strategy for the operation of a variable-speed wind energy conversion s...
This paper presents a control approach for the Permanent Magnet Synchronous Generator (PMSG) based W...
Abstract—This paper proposes a wind speed and rotor position sensorless control for wind turbines di...
This thesis presents a control system for a 2MW direct-drive permanent magnet synchronous generator ...
Due to the intermittent nature of wind, the wind power output tends to be inconsistent, and hence ma...
In the present work, a control strategy for Maximum Power Point Tracking (MPPT) applied to a wind tu...
The aim of this paper is the complete modeling and simulation of an optimal control system using pra...
Maximum Power Point Tracking (MPPT) algorithms are receiving particular attention to maximize the wi...
Maximum power point tracking (MPPT) plays an important role in increasing the efficiency of a wind e...
The speed estimation method is used in order to eliminate the mechanical sensor for measuring the ro...
Frequency stability in an isolated grid can be easily impacted by sudden load or wind speed changes....
This paper proposes a new fuzzy speed control method based on Takagi-Sugeno fuzzy method of permanen...
The popularity of renewable energy has experienced significant growth recently due to the foreseeabl...
Mathematical models and algorithms for maximizing power extraction have become an essential topic in...
Permanent magnet synchronous generator (PMSG) direct driven wind turbines are getting more popular...
The article presents control strategy for the operation of a variable-speed wind energy conversion s...
This paper presents a control approach for the Permanent Magnet Synchronous Generator (PMSG) based W...
Abstract—This paper proposes a wind speed and rotor position sensorless control for wind turbines di...
This thesis presents a control system for a 2MW direct-drive permanent magnet synchronous generator ...
Due to the intermittent nature of wind, the wind power output tends to be inconsistent, and hence ma...
In the present work, a control strategy for Maximum Power Point Tracking (MPPT) applied to a wind tu...
The aim of this paper is the complete modeling and simulation of an optimal control system using pra...
Maximum Power Point Tracking (MPPT) algorithms are receiving particular attention to maximize the wi...
Maximum power point tracking (MPPT) plays an important role in increasing the efficiency of a wind e...
The speed estimation method is used in order to eliminate the mechanical sensor for measuring the ro...
Frequency stability in an isolated grid can be easily impacted by sudden load or wind speed changes....
This paper proposes a new fuzzy speed control method based on Takagi-Sugeno fuzzy method of permanen...
The popularity of renewable energy has experienced significant growth recently due to the foreseeabl...
Mathematical models and algorithms for maximizing power extraction have become an essential topic in...
Permanent magnet synchronous generator (PMSG) direct driven wind turbines are getting more popular...
The article presents control strategy for the operation of a variable-speed wind energy conversion s...
This paper presents a control approach for the Permanent Magnet Synchronous Generator (PMSG) based W...
Abstract—This paper proposes a wind speed and rotor position sensorless control for wind turbines di...