In this paper, a method to compensate parameter variation of IPMSM for accurate torque control in sensorless control mode is proposed. First, a full-order observer for flux estimation of IPMSM is described, and how the inductance error affects the error of back-EMF estimation is analyzed. Next, the condition in which the real torque and the calculated torque based on current-model are the same is derived. And, an inductance compensator for achieving the condition is designed. The compensator can identify the variation of d-q inductance according to temperature and manufacturing tolerance. In addition, the back-EMF constant, which is the flux linkage of the permanent magnets, can be indirectly compensated through the adaptation of d-q induct...
Using sensors to detect current or voltage of motors is disadvantaged because motor is exposed to vi...
This article proposes an online maximum torque-per-Ampere (MTPA) control of an interior permanent-ma...
In this paper, interior permanent magnet synchronous motor (IPMSM) design for sensorless drive, cons...
To achieve better performance of sensorless control of PMSM, a precise and stable estimation of roto...
This paper presents a new adaptive torque estimation algorithm for an interior permanent magnet sync...
The back EMF-based sensorless control method is very popular for permanent magnet synchronous machin...
Interior Permanent Magnet Synchronous Motors (IPMSMs) are receiving increased attention for drive ap...
For interior permanent magnet synchronous motor (IPMSM) drives, accurate torque control and loss-min...
The paper presents a position sensing method for IPM motors based on an observer referring to the es...
Abstract: In this paper, an effective method to achieve accurate and efficient torque control of an ...
In this paper we deal with predictive control of Interior Permanent Magnet Synchronous Motor (IPMSM)...
Inductance asymmetry, which is brought by inherent asymmetric parameters, manufacture tolerance, win...
A back-electromotive force (back-EMF) based sensorless technique for isotropic surface-mounted perma...
This paper presents the developments of sensorless control of interior permanent magnet synchronous ...
In the paper a low time consuming and cost sensorless control algorithm for high dynamics performanc...
Using sensors to detect current or voltage of motors is disadvantaged because motor is exposed to vi...
This article proposes an online maximum torque-per-Ampere (MTPA) control of an interior permanent-ma...
In this paper, interior permanent magnet synchronous motor (IPMSM) design for sensorless drive, cons...
To achieve better performance of sensorless control of PMSM, a precise and stable estimation of roto...
This paper presents a new adaptive torque estimation algorithm for an interior permanent magnet sync...
The back EMF-based sensorless control method is very popular for permanent magnet synchronous machin...
Interior Permanent Magnet Synchronous Motors (IPMSMs) are receiving increased attention for drive ap...
For interior permanent magnet synchronous motor (IPMSM) drives, accurate torque control and loss-min...
The paper presents a position sensing method for IPM motors based on an observer referring to the es...
Abstract: In this paper, an effective method to achieve accurate and efficient torque control of an ...
In this paper we deal with predictive control of Interior Permanent Magnet Synchronous Motor (IPMSM)...
Inductance asymmetry, which is brought by inherent asymmetric parameters, manufacture tolerance, win...
A back-electromotive force (back-EMF) based sensorless technique for isotropic surface-mounted perma...
This paper presents the developments of sensorless control of interior permanent magnet synchronous ...
In the paper a low time consuming and cost sensorless control algorithm for high dynamics performanc...
Using sensors to detect current or voltage of motors is disadvantaged because motor is exposed to vi...
This article proposes an online maximum torque-per-Ampere (MTPA) control of an interior permanent-ma...
In this paper, interior permanent magnet synchronous motor (IPMSM) design for sensorless drive, cons...