AC motorAn 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.
Induction motorAn induction motor or asynchronous motor is an AC electric motor in which the electric current in the rotor needed to produce torque is obtained by electromagnetic induction from the magnetic field of the stator winding. An induction motor can therefore be made without electrical connections to the rotor. An induction motor's rotor can be either wound type or squirrel-cage type. Three-phase squirrel-cage induction motors are widely used as industrial drives because they are self-starting, reliable, and economical.
Electric motorAn 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.
Régulateur de tensionUn régulateur de tension, est un organe électrotechnique ou un composant électronique qui maintient à sa sortie, dans certaines limites, une tension constante, indépendamment de la charge et de la tension d'entrée. Jusque dans les années 1970, les automobiles utilisaient un régulateur électromécanique pour réguler la tension de sortie de leur dynamo ou de leur alternateur. Ces régulateurs utilisent plusieurs relais commutant des résistances afin de faire varier le courant d'excitation de l'alternateur et rendre ainsi sa tension de sortie indépendante du régime de rotation du moteur et de la consommation électrique.
Traction motorA traction motor is an electric motor used for propulsion of a vehicle, such as locomotives, electric or hydrogen vehicles, or electric multiple unit trains. Traction motors are used in electrically powered railway vehicles (electric multiple units) and other electric vehicles including electric milk floats, trolleybuses, elevators, roller coasters, and conveyors, as well as vehicles with electrical transmission systems (diesel-electric locomotives, electric hybrid vehicles), and battery electric vehicles.
DC motorA DC motor is an electrical motor that uses direct current (DC) to produce mechanical force. The most common types rely on magnetic forces produced by currents in the coils. Nearly all types of DC motors have some internal mechanism, either electromechanical or electronic, to periodically change the direction of current in part of the motor. DC motors were the first form of motors widely used, as they could be powered from existing direct-current lighting power distribution systems.
Power system simulationElectrical power system simulation involves power system modeling and network simulation in order to analyze electrical power systems using design/offline or real-time data. Power system simulation software's are a class of computer simulation programs that focus on the operation of electrical power systems. These types of computer programs are used in a wide range of planning and operational situations for electric power systems.
Régulateur linéaireEn électronique, un régulateur linéaire, est un régulateur de tension reposant sur un composant actif travaillant dans sa zone linéaire ou sur un composant passif, comme une diode Zener, travaillant dans sa zone inverse. La figure montre un exemple de régulateur à diode Zener (à proprement parler, il s'agit là plutôt d'un montage stabilisateur). La tension inverse de seuil, dite « tension Zener » (résultant de l'effet Zener) de la diode, permet de stabiliser la tension de sortie.
Alimentation à découpageUne alimentation à découpage est une alimentation électrique dont la régulation est assurée par des composants électroniques de puissance utilisés en commutation (généralement des transistors). Ce mode de fonctionnement diffère de celui des alimentations linéaires dans lesquelles les composants électroniques sont utilisés en mode linéaire. Une alimentation à découpage de type forward est une alimentation qui transmet instantanément la puissance, alors que celle de type flyback stocke cette énergie sous forme d'énergie magnétique dans une inductance (bobine) et libère ensuite cette énergie dans un circuit dit secondaire.
Power-flow studyIn power engineering, the power-flow study, or load-flow study, is a numerical analysis of the flow of electric power in an interconnected system. A power-flow study usually uses simplified notations such as a one-line diagram and per-unit system, and focuses on various aspects of AC power parameters, such as voltages, voltage angles, real power and reactive power. It analyzes the power systems in normal steady-state operation. Power-flow or load-flow studies are important for planning future expansion of power systems as well as in determining the best operation of existing systems.