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Model Predictive Control for Doubly-Fed Induction Generators and Three-Phase Power Converters
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Model Predictive Control for Doubly-Fed Induction Generators and Three-Phase Power Converters in Vernon, BC
By None
Current price: $132.79
Original price: $166.00

Coles
Model Predictive Control for Doubly-Fed Induction Generators and Three-Phase Power Converters in Vernon, BC
By None
Current price: $132.79
Original price: $166.00
Loading Inventory...
Size: Kobo eBook
*Product information may vary - to confirm product availability, pricing, shipping and return information please contact Coles
Model Predictive Control for Doubly-Fed Induction Generators and Three-Phase Power Convertersdescribes the application of model predictive control techniques with modulator and finite control sets to squirrel cage induction motor and in doubly-fed induction generators using field orientation control techniques as both current control and direct power control. Sections discuss induction machines, their key modulation techniques, introduce the utility of model predictive control, review core concepts of vector control, direct torque control, and direct power control alongside novel approaches of MPC. Mathematical modeling of cited systems, MPC theory, their applications, MPC design and simulation in MATLAB are also considered in-depth.The work concludes by addressing implementation considerations, including generator operation under voltage sags or distorted voltage and inverters connected to the grid operating under distorted voltage. Experimental results are presented in full.
Adopts model predictive control design for optimized induction machines geared for complex grid dynamics
Demonstrates how to simulate model predictive control using MATLAB and Simulink
Presents information about hardware implementation to obtain experimental results
Covers generator operation under voltage sags or distorted voltage
Model Predictive Control for Doubly-Fed Induction Generators and Three-Phase Power Convertersdescribes the application of model predictive control techniques with modulator and finite control sets to squirrel cage induction motor and in doubly-fed induction generators using field orientation control techniques as both current control and direct power control. Sections discuss induction machines, their key modulation techniques, introduce the utility of model predictive control, review core concepts of vector control, direct torque control, and direct power control alongside novel approaches of MPC. Mathematical modeling of cited systems, MPC theory, their applications, MPC design and simulation in MATLAB are also considered in-depth.The work concludes by addressing implementation considerations, including generator operation under voltage sags or distorted voltage and inverters connected to the grid operating under distorted voltage. Experimental results are presented in full.
Adopts model predictive control design for optimized induction machines geared for complex grid dynamics
Demonstrates how to simulate model predictive control using MATLAB and Simulink
Presents information about hardware implementation to obtain experimental results
Covers generator operation under voltage sags or distorted voltage



















