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Hybrid Optimization Approach for Energy Control in Electric Vehicle Controller for Regulation of Three-Phase Induction Motors
by
Halifa, Awal
, Kumar, Parmod
, Mamodiya, Udit
, Changqing, Xie
, Webber, Julian L
, Srinivasulu, Chennupalli
, Mehbodniya, Abolfazl
in
Control algorithms
/ Dynamic response
/ Efficiency
/ Electric vehicles
/ Energy consumption
/ Fuzzy logic
/ Fuzzy sets
/ Induction motors
/ Industrial applications
/ Magnetic fields
/ Mathematical problems
/ Optimization
/ Particle swarm optimization
/ Powertrain
/ Simulation
/ Support vector machines
/ Torque
2022
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Hybrid Optimization Approach for Energy Control in Electric Vehicle Controller for Regulation of Three-Phase Induction Motors
by
Halifa, Awal
, Kumar, Parmod
, Mamodiya, Udit
, Changqing, Xie
, Webber, Julian L
, Srinivasulu, Chennupalli
, Mehbodniya, Abolfazl
in
Control algorithms
/ Dynamic response
/ Efficiency
/ Electric vehicles
/ Energy consumption
/ Fuzzy logic
/ Fuzzy sets
/ Induction motors
/ Industrial applications
/ Magnetic fields
/ Mathematical problems
/ Optimization
/ Particle swarm optimization
/ Powertrain
/ Simulation
/ Support vector machines
/ Torque
2022
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Do you wish to request the book?
Hybrid Optimization Approach for Energy Control in Electric Vehicle Controller for Regulation of Three-Phase Induction Motors
by
Halifa, Awal
, Kumar, Parmod
, Mamodiya, Udit
, Changqing, Xie
, Webber, Julian L
, Srinivasulu, Chennupalli
, Mehbodniya, Abolfazl
in
Control algorithms
/ Dynamic response
/ Efficiency
/ Electric vehicles
/ Energy consumption
/ Fuzzy logic
/ Fuzzy sets
/ Induction motors
/ Industrial applications
/ Magnetic fields
/ Mathematical problems
/ Optimization
/ Particle swarm optimization
/ Powertrain
/ Simulation
/ Support vector machines
/ Torque
2022
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Hybrid Optimization Approach for Energy Control in Electric Vehicle Controller for Regulation of Three-Phase Induction Motors
Journal Article
Hybrid Optimization Approach for Energy Control in Electric Vehicle Controller for Regulation of Three-Phase Induction Motors
2022
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Overview
Three-phase induction motors are becoming increasingly popular for electric cars and industrial uses because of their improved efficiency and simplicity of production, among other things. Many enterprises and industries use induction motors in several rotating applications. However, it is a difficult talent to master when it comes to controlling the speed of an induction motor for various purposes. This study examines the performance of a three-phase induction motor using approaches such as field-oriented control and direct torque control. This work utilized the fractional order Darwinian particle swarm optimization (FODPSO) method in fuzzy methodology to optimize a motor’s performance. Field-oriented control (FOC) and Direct torque control (DTC) methods are regulated by FODPSO, which is compared to standard FOC and DTC methods. MATLAB-Simulink was used to compare the outcomes of each system’s simulation model to determine which one performed the best. The support vector machine-direct torque control (SVM-DTC) technology is famous for its rapid dynamic response and decreased torque ripples. Using torque and settling time and rising time reduction, the suggested technique is proved to be superior to the present way.
Publisher
Hindawi,Hindawi Limited,John Wiley & Sons, Inc
Subject
/ Torque
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