Publication

Analytical Determination of the Phase Inductances of a Brushless DC Motor With Faulhaber Winding

Résumé

This paper presents a method to analytically model the self and mutual phase inductances of a brushless dc motor with a Faulhaber winding. The method of images is used to “remove” the motor iron parts in the model in order to analyze the winding completely in the air. The analytical model is verified using 3-D finite-element method simulations and measurements.

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Concepts associés (28)
Electric motor
An electric motor is an electrical machine that converts electrical energy into mechanical energy. Most electric motors operate through the interaction between the motor's magnetic field and electric current in a wire winding to generate force in the form of torque applied on the motor's shaft. An electric generator is mechanically identical to an electric motor, but operates with a reversed flow of power, converting mechanical energy into electrical energy.
AC motor
An AC motor is an electric motor driven by an alternating current (AC). The AC motor commonly consists of two basic parts, an outside stator having coils supplied with alternating current to produce a rotating magnetic field, and an inside rotor attached to the output shaft producing a second rotating magnetic field. The rotor magnetic field may be produced by permanent magnets, reluctance saliency, or DC or AC electrical windings.
Moteur sans balais
Un moteur sans balais, ou « moteur brushless », ou machine synchrone auto-pilotée à aimants permanents, est une machine électrique de la catégorie des machines synchrones, dont le rotor est constitué d'un ou de plusieurs aimants permanents et pourvu d'origine d'un capteur de position rotorique : capteur à effet Hall, synchro-résolver, codeur rotatif (par exemple codeur incrémental), ou tout autre système permettant l'auto-pilotage de la machine. Vu de l'extérieur, il fonctionne en courant continu.
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MOOCs associés (8)
Conversion electromécanique II
Principes de fonctionnement, construction, calcul et applications des moteurs electriques.
Conversion electromécanique II
Principes de fonctionnement, construction, calcul et applications des moteurs electriques.
Electrotechnique I
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