The paper analyses a combined current model-voltage model estimator for flux linkages in permanent magnet synchronous machines, with the capability of converging to exact flux estimation even in presence of mismatches because of magnetic saturation. As a trend in next-generation electric drives, the whole algorithm, including both the flux estimator and the standard field-oriented control, has been implemented in a field-programmable gate array (FPGA) chip. Simulations and experimental tests, along with some figures for the FPGA selection, have been included in the study
International audienceIn this paper, a new class of estimators for permanent magnet synchronous moto...
This paper proposes a novel rotor position estimation technique based on stator flux linkage to impl...
This paper presents a torque error compensation algorithm for a surface mounted permanent magnet syn...
The paper analyses a combined current model-voltage model estimator for flux linkages in permanent m...
A flux linkage estimator for synchronous machines which combines a voltage and a current model is an...
A new algorithm for position and speed estimation in permanent magnet synchronous motors is presente...
In an increasing number of applications highly dynamic electrical drives, characterized by high qual...
A flux linkage estimator for synchronous machines which combines a voltage and a current model is an...
Flux linkage based sensorless position estimation methods for permanent magnet synchronous machines ...
Abstract – This paper investigates an improved stator flux linkage observer for sensorless permanent...
In this paper authours propose two different strategies of flux linkage estimation for sensorless FO...
In this paper, a simple and accurate method is proposed for online estimation of the rotor permanent...
In this thesis, a sensorless control method of permanent magnet synchronous machines (PMSMs), whose ...
A model predictive control algorithm (MPC) suitable for Surface-Mounted Permanent Magnet Synchronous...
A model predictive control algorithm (MPC) suitable for Surface-Mounted Permanent Magnet Synchronous...
International audienceIn this paper, a new class of estimators for permanent magnet synchronous moto...
This paper proposes a novel rotor position estimation technique based on stator flux linkage to impl...
This paper presents a torque error compensation algorithm for a surface mounted permanent magnet syn...
The paper analyses a combined current model-voltage model estimator for flux linkages in permanent m...
A flux linkage estimator for synchronous machines which combines a voltage and a current model is an...
A new algorithm for position and speed estimation in permanent magnet synchronous motors is presente...
In an increasing number of applications highly dynamic electrical drives, characterized by high qual...
A flux linkage estimator for synchronous machines which combines a voltage and a current model is an...
Flux linkage based sensorless position estimation methods for permanent magnet synchronous machines ...
Abstract – This paper investigates an improved stator flux linkage observer for sensorless permanent...
In this paper authours propose two different strategies of flux linkage estimation for sensorless FO...
In this paper, a simple and accurate method is proposed for online estimation of the rotor permanent...
In this thesis, a sensorless control method of permanent magnet synchronous machines (PMSMs), whose ...
A model predictive control algorithm (MPC) suitable for Surface-Mounted Permanent Magnet Synchronous...
A model predictive control algorithm (MPC) suitable for Surface-Mounted Permanent Magnet Synchronous...
International audienceIn this paper, a new class of estimators for permanent magnet synchronous moto...
This paper proposes a novel rotor position estimation technique based on stator flux linkage to impl...
This paper presents a torque error compensation algorithm for a surface mounted permanent magnet syn...