[go: up one dir, main page]

Wang et al., 2020 - Google Patents

New sensorless speed control of a hybrid stepper motor based on fuzzy sliding mode observer

Wang et al., 2020

View HTML
Document ID
1813841789228108231
Author
Wang C
Cao D
Publication year
Publication venue
Energies

External Links

Snippet

Stepper motors are widely used in industrial and consumer applications due to low-cost, high reliability, and open-loop control capability. Though open-loop features a simple structure, it bears low step resolution, high torque ripple, and low energy efficiency. To …
Continue reading at www.mdpi.com (HTML) (other versions)

Similar Documents

Publication Publication Date Title
Wang et al. New sensorless speed control of a hybrid stepper motor based on fuzzy sliding mode observer
Wang et al. Advanced control strategies of induction machine: Field oriented control, direct torque control and model predictive control
Farhan et al. Simplified sensorless current predictive control of synchronous reluctance motor using online parameter estimation
Tang et al. On speed control of a permanent magnet synchronous motor with current predictive compensation
Elgbaily et al. A combined control scheme of direct torque control and field-oriented control algorithms for three-phase induction motor: Experimental validation
Karlovsky et al. Induction motor drive direct torque control and predictive torque control comparison based on switching pattern analysis
Wang et al. Operational improvement of interior permanent magnet synchronous motor using fuzzy field-weakening control
Farhan et al. Advanced strategy of speed predictive control for nonlinear synchronous reluctance motors
Bouguenna et al. Multiple-vector model predictive control with fuzzy logic for PMSM electric drive systems
Shiravani et al. An enhanced sliding mode speed control for induction motor drives
Anuchin et al. Continuous control set model predictive control of a switch reluctance drive using lookup tables
Pimkumwong et al. Online speed estimation using artificial neural network for speed sensorless direct torque control of induction motor based on constant V/F control technique
Men et al. Implementation of an improved motor control for electric vehicles
Son et al. Performance improvement of dtc-svm of pmsm with compensation for the dead time effect and power switch loss based on extended kalman filter
Li et al. Commutation torque ripple suppression strategy of brushless DC motor considering back electromotive force variation
Su et al. An improved continuous-time model predictive control of permanent magnetic synchronous motors for a wide-speed range
Wang et al. Nonlinear digital simulation models of switched reluctance motor drive
Serra et al. A simplified model predictive control for asymmetrical six-phase induction motors that eliminates the weighting factor
Yao et al. Senseless control of permanent magnet synchronous motors based on new fuzzy adaptive sliding mode observer
Ghanayem et al. Decoupled Speed and Flux Control of Three-Phase PMSM Based on the Proportional-Resonant Control Method
Abdelwanis et al. A Fuzzy-Based Proportional–Integral–Derivative with Space-Vector Control and Direct Thrust Control for a Linear Induction Motor
Shahzad et al. A hybrid approach for an efficient estimation and control of permanent magnet synchronous motor with fast dynamics and practically unavailable measurements
Elhaj et al. Multiparameter estimation-based sensorless adaptive direct voltage MTPA control for IPMSM using fuzzy logic MRAS
Li et al. An improved model predictive current controller of switched reluctance machines using time-multiplexed current sensor
Tong et al. A novel sensorless control strategy for brushless direct current motor based on the estimation of line back electro-motive force