FIELD: electricity.
SUBSTANCE: installation comprises a housing wherein a control unit, rotor position sensors are installed, in the housing of each of which there is a signal winding and an excitation winding, a lateral axial magnetic core with multiphase winding of the main generator armature, a lateral axial magnetic core with an additional multiphase winding, an internal axial magnetic core with multiphase winding of the subexciter anchor, the main and additional singlephase excitation windings of the exciter, and a rotor on whose shaft a permanent axial multipolar magnet of the subexciter inductor and an axial rotating magnetic core with multiphase winding of the exciter armature and a singlephase excitation winding of the main generator are fixed firmly by means of disks. The singlephase excitation winding of the main generator is connected to the multiphase winding of the exciter armature through a multiphase full-wave rectifier, the main singlephase excitation winding of the exciter is connected to the multiphase winding of the exciter armature through the multiphase full-wave rectifier, and the multiphase armature winding of the main generator is connected to the output multiphase full-wave rectifier. In the upper part of the housing there is a photoelectric converter connected to the additional singlephase excitation winding of the exciter. In the lower part of the housing there is a thermal converter, which can be connected to the additional multiphase winding through the control unit. The output multiphase full-wave rectifier can be connected to a battery external backup power source, wherein the additional multiphase winding can be connected to an external thermal converter via the control unit.
EFFECT: summation of mechanical energy, light energy, with its preliminary conversion into electric energy and thermal energy with its preliminary conversion into electric energy, with simultaneous conversion of the resulting total energy into high-quality DC electrical energy.
4 cl, 7 dwg
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Authors
Dates
2017-10-12—Published
2017-01-11—Filed