In the control of Interior Permanent Magnet Synchronous Machines (IPMSMs), Maximum Torque Per Ampere (MTPA) based on motor parameters is a common approach to achieve high efficiency and torque density. Parametric uncertainty (e.g. due to identification errors, magnetic saturation or temperature variation) results in undesired deviation from the optimal operating trajectory. To solve this problem, MTPA tracking methods have been proposed, which exploit signal injection to search the minimum current point for a certain load torque, in a closed loop fashion. For one of these methods, [13], stability of the non linear dynamics was analyzed, and an upper bound for the convergence time was found, but no explicit method was proposed for the design...
For interior permanent magnet synchronous motor (IPMSM) drives, accurate torque control and loss-min...
Maximum torque per ampere (MTPA) control scheme for internal permanent magnet (IPM) machine is prese...
Energy saving will be the key-factor of the next-generation electrical drives. Extremum-seeking tech...
Maximum Torque Per Ampere (MTPA) based on motor parameters is a common approach to achieve high effi...
This paper deals with a novel approach for the real-time tracking of the maximum-torque-per-ampere (...
Maximum Torque Per Ampere (MTPA) tracking techniques for the control of Interior Permanent Magnet Sy...
Energy saving is going to bias the next generation of electric drives, in all fields. Injection-base...
This article proposes an online maximum torque-per-Ampere (MTPA) control of an interior permanent-ma...
In this paper, a comparative study and analysis of two different maximum torque per ampere (MTPA) sp...
The aim of this study was to develop a new method to operate an interior permanent magnet synchronou...
Two main classes for Maximum-Torque-Per-Ampère (MTPA) tracking in Interior Permanent Magnet (IPM) an...
The real-time tracking of the Maximum-Torque-Per-Ampere (MTPA) trajectory in Interior-Permanent-Magn...
This paper introduces a novel virtual signal injectionbased control method for maximum torque per a...
The efficient control of permanent magnet synchronous motors (PMSM) requires the development of a te...
Due to parameter variations with stator currents, the derivatives of machine parameters with respect...
For interior permanent magnet synchronous motor (IPMSM) drives, accurate torque control and loss-min...
Maximum torque per ampere (MTPA) control scheme for internal permanent magnet (IPM) machine is prese...
Energy saving will be the key-factor of the next-generation electrical drives. Extremum-seeking tech...
Maximum Torque Per Ampere (MTPA) based on motor parameters is a common approach to achieve high effi...
This paper deals with a novel approach for the real-time tracking of the maximum-torque-per-ampere (...
Maximum Torque Per Ampere (MTPA) tracking techniques for the control of Interior Permanent Magnet Sy...
Energy saving is going to bias the next generation of electric drives, in all fields. Injection-base...
This article proposes an online maximum torque-per-Ampere (MTPA) control of an interior permanent-ma...
In this paper, a comparative study and analysis of two different maximum torque per ampere (MTPA) sp...
The aim of this study was to develop a new method to operate an interior permanent magnet synchronou...
Two main classes for Maximum-Torque-Per-Ampère (MTPA) tracking in Interior Permanent Magnet (IPM) an...
The real-time tracking of the Maximum-Torque-Per-Ampere (MTPA) trajectory in Interior-Permanent-Magn...
This paper introduces a novel virtual signal injectionbased control method for maximum torque per a...
The efficient control of permanent magnet synchronous motors (PMSM) requires the development of a te...
Due to parameter variations with stator currents, the derivatives of machine parameters with respect...
For interior permanent magnet synchronous motor (IPMSM) drives, accurate torque control and loss-min...
Maximum torque per ampere (MTPA) control scheme for internal permanent magnet (IPM) machine is prese...
Energy saving will be the key-factor of the next-generation electrical drives. Extremum-seeking tech...