This paper presents a new sensorless vector control system for high performance induction motor drives fed by a matrix converter with a non-linearity compensation and disturbance observer. The nonlinear voltage distortion that is caused by communication delay and on-state voltage drop in switching device is corrected by a new matrix converter modeling. The lumped disturbances such as parameter variation and load disturbance of the system are estimated by the radial basis function network (RBFN). An adaptive observer is also employed to bring better responses at the low speed operation. Experimental results are shown to illustrate the performance of the proposed system
This paper presents a new method to improve sensorless performance of matrix converter drives using ...
This paper presents a time-varying sinusoidal disturbance compensation method (based on an adaptive ...
Over the past two decades technological advances in power electronics and an increasing demand for h...
This paper presents a new sensorless vector control system for high performance induction motor driv...
This paper presents a new method to compensate the nonlinearity for matrix converter drives using di...
This paper presents a new robust sensorless control system for high performance induction motor driv...
This paper presents a new method to compensate the nonlinearities for matrix converter drives. The n...
This paper presents a new method to improve sensorless performance of matrix converter drives using ...
This paper presents a new method to improve sensorless performance of matrix converter drives using ...
This paper presents a new method to compensate the nonlinearity for matrix converter drives using di...
Sensorless vector control technique using adaptive observer scheme is being used to control the per...
This paper presents a new and simple method for sensorless control of matrix converter drives using ...
Udgivelsesdato: November-decemberThis paper presents a new method to improve the sensorless performa...
This paper aims at combining some of the best features of an available induction motor (IM) drive sy...
Udgivelsesdato: DECThis paper presents a new and simple method for sensorless operation of matrix co...
This paper presents a new method to improve sensorless performance of matrix converter drives using ...
This paper presents a time-varying sinusoidal disturbance compensation method (based on an adaptive ...
Over the past two decades technological advances in power electronics and an increasing demand for h...
This paper presents a new sensorless vector control system for high performance induction motor driv...
This paper presents a new method to compensate the nonlinearity for matrix converter drives using di...
This paper presents a new robust sensorless control system for high performance induction motor driv...
This paper presents a new method to compensate the nonlinearities for matrix converter drives. The n...
This paper presents a new method to improve sensorless performance of matrix converter drives using ...
This paper presents a new method to improve sensorless performance of matrix converter drives using ...
This paper presents a new method to compensate the nonlinearity for matrix converter drives using di...
Sensorless vector control technique using adaptive observer scheme is being used to control the per...
This paper presents a new and simple method for sensorless control of matrix converter drives using ...
Udgivelsesdato: November-decemberThis paper presents a new method to improve the sensorless performa...
This paper aims at combining some of the best features of an available induction motor (IM) drive sy...
Udgivelsesdato: DECThis paper presents a new and simple method for sensorless operation of matrix co...
This paper presents a new method to improve sensorless performance of matrix converter drives using ...
This paper presents a time-varying sinusoidal disturbance compensation method (based on an adaptive ...
Over the past two decades technological advances in power electronics and an increasing demand for h...