Claimed is a synchronous salient-pole generator, comprising a stator which comprises a stator cores disposed on a stator back and a stator core coils, and comprising a salient-pole rotor, rotatably mounted in the generator in relation to the stator and being adapted for magnetic interaction with the stator, the rotor comprises magnets with field poles and a rotor hub on which the magnets are mounted. The claimed generator is characterized in that the stator may be disposed either outside or inside the rotor and may comprise inner and outer stator between which the rotor is disposed. Wherein the stator, or it's both parts in case of the composite stator, comprises steel hollow cylinder with radial openings, which cylinder is disposed between the stator, wherein the stator cores extend through the openings such that the ends of the cores are disposed on one level with the cylinder surface, external relatively to the stator. This structure provides the magnetic field of the magnets to freely slide along the surface of the cylinder and along the ends of the stator core due to the fact that the magnetizing field is equal in case of the interaction with the cylinder and in case of the interaction stator cores. The technical effect consists in reducing the kinetic energy losses and, thus, improving the efficiency of the generator.
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