Figure 3 from A Cylindrical Rotor Synchronous Generator Design for
Rotor In A Generator. Both types and their variations are discussed. Web the rotor of a synchronous generator is essentially a large electromagnet.
Figure 3 from A Cylindrical Rotor Synchronous Generator Design for
As the pmg rotor rotates, it produces ac voltage in the pmg stator. Its rotation is due to the interaction between the windings and magnetic fields which. The regulator rectifies this voltage and applies dc to the exciter stator. Web the rotor of a synchronous generator is essentially a large electromagnet. For this purpose, the field windings of the exciter are placed on its stator and the phase windings on its rotor. Both types and their variations are discussed. Web types of generator rotors there are two basic types of generator rotors: Web the rotor is a moving component of an electromagnetic system in the electric motor, electric generator, or alternator. A rectifier mounted on the. Web in most modern installations, a synchronous generator is used as the exciter.
For this purpose, the field windings of the exciter are placed on its stator and the phase windings on its rotor. The magnetic poles on the rotor can be of either salient or nonsalient construction. Both types and their variations are discussed. Its rotation is due to the interaction between the windings and magnetic fields which. Web in most modern installations, a synchronous generator is used as the exciter. For this purpose, the field windings of the exciter are placed on its stator and the phase windings on its rotor. A rectifier mounted on the. As the pmg rotor rotates, it produces ac voltage in the pmg stator. Web the rotor of a synchronous generator is essentially a large electromagnet. The regulator rectifies this voltage and applies dc to the exciter stator. Web the rotor is a moving component of an electromagnetic system in the electric motor, electric generator, or alternator.