METHOD FOR IMPROVING DYNAMIC STABILITY AND DAMPING OSCILLATIONS OF ELECTRIC-POWER SYSTEMS AND DEVICE FOR ITS REALISATION Russian patent published in 2008 - IPC H02J3/24 H02P9/06 H02P9/08 

Abstract RU 2339144 C1

FIELD: electricity.

SUBSTANCE: invention is attributed to the field of electric engineering and can be used for improving dynamic stability of electric-power systems and for damping electromechanical vibrations of generator rotor. In the method for improving dynamic stability and vibrations damping, alternating current synchronous generator rotor speed is monitored and synchronous generator rotor speed is lowered after insertion disturbance into system up to the rotation rate of magnetic field by means of mechanical deceleration of mentioned generator rotor. Electromagnetic brake is mechanically linked with generator rotor and prime mover rotor via clutches, voltage on generator terminals and generator stator current is continuously measured by which parameters the generator electromagnetic power is determined. This power is compared with electromagnetic power value which existed before insertion of disturbance. When result of power comparison exceeds predefined value, control signal for electromagnetic brake switching on is generated. The value of decelerating torque is determined by difference between values of the measured electromagnetic power and the electromagnetic power which existed before disturbance insertion, and duration of decelerating torque application is determined by change in generator rotor speed. To do this the generator rotor speed after disturbance insertion is determined and compared with the value which existed before disturbance insertion. Electromagnetic brake is switched off when equality of current rotor speed and rotor speed in mode before disturbance is reached and when measured power is equal to the power which existed before disturbance insertion.

EFFECT: dynamic stability of electric-power system improvement and providing damping of electric-power system electromechanical vibrations.

11 cl, 9 dwg

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RU 2 339 144 C1

Authors

Sharov Jurij Vladimirovich

Jankovich Il'Ja Drago

Kuznetsov Oleg Nikolaevich

Dates

2008-11-20Published

2007-07-19Filed