2021
DOI: 10.48084/etasr.4255
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An Optimal Fuzzy Logic-based PI Controller for the Speed Control of an Induction Motor using the V/F Method

Abstract: The Induction Motor (IM) is popular because of its low price, higher efficiency, and low maintenance cost. A comparative analysis of IM speed controllers using Voltage/Frequency (V/F) control or Scalar Control (SC) is presented in this paper. SC is commonly used due to its ease of implementation, simplicity, and low cost. To decrease the difficulty and cost of hardware implementation, this paper proposes an optimal Fuzzy Proportional Integral (Fuzzy-PI) controller. Firstly, the speed of IM using the V/F contro… Show more

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Cited by 8 publications
(4 citation statements)
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“…The system frequency will be controlled by controlling the pitch angle of WT. The fuzzy-based controller has proven superior performance in induction motor control applications [34]. The pitch angle control has a great impact on the power generation of a wind turbine.…”
Section: Frequency Control Using Fuzzy-tuned Tidmentioning
confidence: 99%
“…The system frequency will be controlled by controlling the pitch angle of WT. The fuzzy-based controller has proven superior performance in induction motor control applications [34]. The pitch angle control has a great impact on the power generation of a wind turbine.…”
Section: Frequency Control Using Fuzzy-tuned Tidmentioning
confidence: 99%
“…When the VSI starts the induction motor, low frequency applies to the motor and high starting currents will be avoided. After that, the applied voltage and frequency are increased to accelerate the motor to the steady-state speed without drawing excessive current [33].…”
Section: Wwwetasrcom Nasir: Determination Of the Harmonic Losses In A...mentioning
confidence: 99%
“…In the control structure of induction motor on the dq coordinate system, the current i sd controls the flux, and the current i sq controls the torque. In order to design the controllers to ensure the stability of the system, there are linear control methods such as the PI controller or PI combined with optimization algorithms [13][14], ADRC controller [15], deadbeat [16] or nonlinear controllers such as the exact linearization, sliding mode, backstepping, neuron, robust nonlinear predictive control [17][18][19][20][21][22][23][24], etc. The typical linear control method is the PI controller, which has the advantage of simple design and little dependence on motor parameters.…”
Section: Introductionmentioning
confidence: 99%