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Adaptive neuro-fuzzy controller for static VAR compensator to damp out wind energy conversion system oscillation
by
Chung, Chi-Yung
, Huang, Huazhang
in
adaptive neuro‐fuzzy controller
/ adaptive neuro‐fuzzy inference system
/ Applied sciences
/ damping signal
/ Direct energy conversion and energy accumulation
/ Electrical engineering. Electrical power engineering
/ Electrical machines
/ Electrical power engineering
/ Energy
/ Exact sciences and technology
/ fuzzy control
/ lead‐lag compensation
/ mechanical torque
/ Miscellaneous
/ modified two‐area four‐machine power network
/ moving average processes
/ Natural energy
/ neurocontrollers
/ periodic pulse reduction
/ power generation control
/ Power networks and lines
/ power system dynamic stability
/ radial basis function neural network
/ Regulation and control
/ static VAR compensator
/ static VAr compensators
/ system dynamic stability
/ third‐order autoregressive‐moving average system model
/ time‐domain simulation
/ torque
/ torque oscillation problem
/ torque oscillations
/ tower shadow
/ WECS active power oscillations
/ WECS integration
/ WECS synchronised operating condition
/ Wind energy
/ wind energy conversion system oscillation
/ wind power plants
/ wind shear
2013
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Adaptive neuro-fuzzy controller for static VAR compensator to damp out wind energy conversion system oscillation
by
Chung, Chi-Yung
, Huang, Huazhang
in
adaptive neuro‐fuzzy controller
/ adaptive neuro‐fuzzy inference system
/ Applied sciences
/ damping signal
/ Direct energy conversion and energy accumulation
/ Electrical engineering. Electrical power engineering
/ Electrical machines
/ Electrical power engineering
/ Energy
/ Exact sciences and technology
/ fuzzy control
/ lead‐lag compensation
/ mechanical torque
/ Miscellaneous
/ modified two‐area four‐machine power network
/ moving average processes
/ Natural energy
/ neurocontrollers
/ periodic pulse reduction
/ power generation control
/ Power networks and lines
/ power system dynamic stability
/ radial basis function neural network
/ Regulation and control
/ static VAR compensator
/ static VAr compensators
/ system dynamic stability
/ third‐order autoregressive‐moving average system model
/ time‐domain simulation
/ torque
/ torque oscillation problem
/ torque oscillations
/ tower shadow
/ WECS active power oscillations
/ WECS integration
/ WECS synchronised operating condition
/ Wind energy
/ wind energy conversion system oscillation
/ wind power plants
/ wind shear
2013
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Adaptive neuro-fuzzy controller for static VAR compensator to damp out wind energy conversion system oscillation
by
Chung, Chi-Yung
, Huang, Huazhang
in
adaptive neuro‐fuzzy controller
/ adaptive neuro‐fuzzy inference system
/ Applied sciences
/ damping signal
/ Direct energy conversion and energy accumulation
/ Electrical engineering. Electrical power engineering
/ Electrical machines
/ Electrical power engineering
/ Energy
/ Exact sciences and technology
/ fuzzy control
/ lead‐lag compensation
/ mechanical torque
/ Miscellaneous
/ modified two‐area four‐machine power network
/ moving average processes
/ Natural energy
/ neurocontrollers
/ periodic pulse reduction
/ power generation control
/ Power networks and lines
/ power system dynamic stability
/ radial basis function neural network
/ Regulation and control
/ static VAR compensator
/ static VAr compensators
/ system dynamic stability
/ third‐order autoregressive‐moving average system model
/ time‐domain simulation
/ torque
/ torque oscillation problem
/ torque oscillations
/ tower shadow
/ WECS active power oscillations
/ WECS integration
/ WECS synchronised operating condition
/ Wind energy
/ wind energy conversion system oscillation
/ wind power plants
/ wind shear
2013
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Adaptive neuro-fuzzy controller for static VAR compensator to damp out wind energy conversion system oscillation
Journal Article
Adaptive neuro-fuzzy controller for static VAR compensator to damp out wind energy conversion system oscillation
2013
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Overview
Wind shear and tower shadow produce a periodic pulse reduction in mechanical torque captured from wind energy resulting in wind energy conversion system (WECS) active power oscillations. In this study, an adaptive neuro-fuzzy controller for static VAR compensator, used in power networks integrated with WECS, is presented to address the torque oscillation problem. The proposed controller consists of a radial basis function neural network representing a third-order auto-regressive and moving average system model and performing the prediction, and a main controller with adaptive neuro-fuzzy inference system providing the damping signal. A modified two-area four-machine power network with WECS integration is applied to validate the proposed implementation, compared with conventional lead/lag compensation. Time-domain simulations prove that the proposed controller can provide a damping signal to improve the active power oscillation and system dynamic stability, influenced by torque oscillations under WECSs synchronised operating condition.
Publisher
The Institution of Engineering and Technology,Institution of Engineering and Technology,The Institution of Engineering & Technology
Subject
adaptive neuro‐fuzzy controller
/ adaptive neuro‐fuzzy inference system
/ Direct energy conversion and energy accumulation
/ Electrical engineering. Electrical power engineering
/ Electrical power engineering
/ Energy
/ Exact sciences and technology
/ modified two‐area four‐machine power network
/ power system dynamic stability
/ radial basis function neural network
/ third‐order autoregressive‐moving average system model
/ torque
/ WECS active power oscillations
/ WECS synchronised operating condition
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