2022
DOI: 10.11591/ijpeds.v13.i2.pp733-743
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Switching function parameter variation analysis of a quasi-sliding mode controlled induction motor drive

Abstract: Sliding mode control is a nonlinear, robust control that is having better load disturbance rejection capability, less parameter sensitivity and fast dynamic response. Conventional sliding mode control introduces high chattering that can degrade the induction motor (IM) drive system responses. Hence, a quasi-sliding mode controller (Q-SMC) using a hyperbolic tangent function coupled with equivalent control is designed for robust speed control of vector-controlled IM drive in this work. This work focuses on the … Show more

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Cited by 3 publications
(4 citation statements)
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References 22 publications
(29 reference statements)
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“…This work proposes the design of a simple rotor flux estimator generating flux magnitude and angle. In fact, only the direct component of the rotor flux has to be estimated because the quadrature one is zero in the rotor flux frame [25].…”
Section: Rotor Flux Estimationmentioning
confidence: 99%
See 1 more Smart Citation
“…This work proposes the design of a simple rotor flux estimator generating flux magnitude and angle. In fact, only the direct component of the rotor flux has to be estimated because the quadrature one is zero in the rotor flux frame [25].…”
Section: Rotor Flux Estimationmentioning
confidence: 99%
“…The sign function ๐‘ ๐‘–๐‘”๐‘›(๐‘ฅ) in sliding mode control causes chattering and degradation of the quality of control inputs absorbed currents and controlled variables [26], [27]. The replacement of the sign function by a smooth function like inverse tangent or hyperbolic tangent functions allows to overcome this problem [25], [28], [9]. We propose ) function that can be adjusted by the coefficient ๐›ฟ.…”
Section: Sign Function Approximationmentioning
confidence: 99%
“…This controller generates the speed set point for M1 in a cascade-control loop structure. A speed sliding mode controller (SSMC) is designed to control the speed of an induction motor fed by three phase voltage source inverters controlled by pulse width modulation (PWM) technique [16], [17].…”
Section: Control Structurementioning
confidence: 99%
“…One prominent control technique developed in the 1970s is field-oriented control (FOC), which offers the advantage of decoupling electromagnetic torque and flux. This enables a prompt torque response, a broad range of speed regulation, and high efficiency across a variety of loads [7], [8]. Nevertheless, field-oriented control (FOC) can be intricate and susceptible to motor parameter variations [9].…”
Section: Introductionmentioning
confidence: 99%