IP Library Granted Patent US 11,990,754
Granted Patent B2
US 11,990,754 · App. 17/470,108 · Granted May 21, 2024

Power-system stabilization system and power-system stabilization method

Inventor: Tatsuro Kozaki (Yokohama, JP)
Assignee: Mitsubishi Heavy Industries, Ltd.
H02J3/1885H02J3/381H02J3/40H02J2300/28
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Quick Facts
Patent No.
US 11,990,754
App. No.
17/470,108
Granted
May 21, 2024
Kind
B2
Abstract

The present invention provides a power-system stabilization system and a power-system stabilization method, which fundamentally solve the problems of insufficiency and fluctuation in the voltage maintenance capacity and the frequency maintenance capacity. A power-system stabilization system of the present invention comprises a synchronous machine to be field-regulated disposed in an electric power station connected to a power system, a magnetic field regulator for controlling the synchronous machine, and a compensation circuit for correcting a control constant of the magnetic field regulator in accordance with a power-system stability maintaining index that is an index reflecting a renewable energy amount in the power system.

Claims (70)

1. A power-system stabilization system comprising:

a synchronous machine to be field-regulated disposed in an electric power station connected to a power system;

a magnetic field regulator for controlling the synchronous machine; and

a compensation circuit for correcting a control constant of the magnetic field regulator in accordance with a power-system stability maintaining index that is an index reflecting a renewable energy amount in the power system.

2. The power-system stabilization system according to claim 1 ,

wherein the synchronous machine is a synchronous motor.

3. The power-system stabilization system according to claim 1 ,

wherein the power-system stability maintaining index is a composition ratio of renewable energy of the power system.

4. The power-system stabilization system according to claim 1 ,

wherein the power-system stability maintaining index is a voltage variation degree that indicates a variation degree of a power system voltage with respect to a reference value of the power system voltage.

5. The power-system stabilization system according to claim 1 ,

wherein the electric power station is connected to a central device via communication, and

wherein the electric power station receives the power-system stability maintaining index obtained by the central device and changes the control constant.

6. The power-system stabilization system according to claim 1 ,

wherein the electric power station executes an arithmetic operation to obtain the power-system stability maintaining index from information derived through communication and changes the control constant.

7. The power-system stabilization system according to claim 1 ,

wherein the magnetic field regulator includes an automatic voltage regulator AVR for operating current flowing through a magnetic field coil of the synchronous machine in accordance with a terminal voltage deviation of the synchronous machine; and

wherein the compensation circuit changes the control constant of the automatic voltage regulator AVR in accordance with the power-system stability maintaining index.

8. The power-system stabilization system according to claim 1 ,

wherein the magnetic field regulator includes a power system voltage regulator PSVR for adjusting a terminal voltage deviation of an automatic voltage regulator AVR in accordance with a linkage point voltage deviation of the synchronous machine, the automatic voltage regulator AVR operating current flowing through a magnetic field coil of the synchronous machine in accordance with a terminal voltage deviation of the synchronous machine; and

wherein the compensation circuit changes the control constant of the magnetic field regulator from the power system voltage regulator PSVR to the automatic voltage regulator AVR in accordance with the power-system stability maintaining index.

9. The power-system stabilization system according to claim 1 ,

wherein the magnetic field regulator includes an automatic reactive power regulator AQR for adjusting a terminal voltage deviation of an automatic voltage regulator AVR in accordance with a reactive power deviation of the synchronous machine, the automatic voltage regulator AVR operating current flowing through a magnetic field coil of the synchronous machine in accordance with a terminal voltage deviation of the synchronous machine; and

wherein the compensation circuit changes the control constant of the magnetic field regulator from the automatic reactive power regulator AQR to the automatic voltage regulator AVR in accordance with the power-system stability maintaining index.

10. The power-system stabilization system according to claim 1 ,

wherein the magnetic field regulator includes an automatic power factor regulator APFR for adjusting a terminal voltage deviation of an automatic voltage regulator AVR to make a power factor of the synchronous machine constant, the automatic voltage regulator AVR operating current flowing through a magnetic field coil of the synchronous machine in accordance with a terminal voltage deviation of the synchronous machine; and

wherein the compensation circuit changes the control constant of the magnetic field regulator from the automatic power factor regulator APFR to the automatic voltage regulator AVR in accordance with the power-system stability maintaining index.

11. The power-system stabilization system according to claim 1 ,

wherein the magnetic field regulator includes a power system stabilizer PSS for adjusting a terminal voltage deviation of an automatic voltage regulator AVR in accordance with a power stabilizing signal obtained from power and system frequency of the synchronous machine, the automatic voltage regulator AVR operating current flowing through a magnetic field coil of the synchronous machine in accordance with a terminal voltage deviation of the synchronous machine; and

wherein the compensation circuit changes the control constant of the magnetic field regulator from the power system stabilizer PSS to the automatic voltage regulator AVR in accordance with the power-system stability maintaining index.

12. The power-system stabilization system according to claim 1 ,

wherein the compensation circuit reduces a control gain of the control constant when the power-system stability maintaining index is a large value.

13. The power-system stabilization system according to claim 1 ,

wherein the control constant is a control gain, an integral gain, or an integration time constant.

14. A power-system stabilization system comprising:

a synchronous machine driven by a prime mover, the synchronous machine disposed in an electric power station connected to a power system;

a prime mover control device for controlling the prime mover; and

a compensation circuit for correcting a control constant of the prime mover control device in accordance with a power-system stability maintaining index that is an index reflecting a renewable energy amount in the power system.

15. The power-system stabilization system according to claim 14 ,

wherein the power-system stability maintaining index is a frequency variation degree that indicates a variation degree of a power system frequency with respect to a reference value of the power system frequency.

16. The power-system stabilization system according to claim 14 ,

wherein the prime mover control device obtains a signal as an output command value, the signal generated by an adjuster through proportional integration of a frequency deviation of the power system; and

wherein a control constant of the adjuster is corrected in accordance with the power-system stability maintaining index.

17. The power-system stabilization system according to claim 14 ,

wherein the prime mover control device includes an adjuster for operating a prime mover input; and

wherein a control constant of the adjuster is corrected in accordance with the power-system stability maintaining index.

18. The power-system stabilization system according to claim 17 ,

wherein the adjuster operates the prime mover input by executing a proportional integral arithmetic operation of a difference between an output command value given to a power plant and a load of the synchronous machine.

19. The power-system stabilization system according to claim 17 ,

wherein the adjuster operates the prime mover input by executing a proportional arithmetic operation of a difference between a rotational speed of the prime mover and a reference rotational speed.

20. A power-system stabilization system comprising:

a reactive power compensation device including a capacitor and a power semiconductor, the reactive power compensation device disposed in an electric power station connected to a power system;

a reactive power control device for controlling the reactive power compensation device; and

a compensation circuit for correcting a control constant of the reactive power control device in accordance with a power-system stability maintaining index that is an index reflecting a renewable energy amount in the power system.

21. A power-system stabilization method for a power system which an electric power station is connected to, the electric power station including a synchronous machine to be field-regulated, the synchronous machine being controlled by a magnetic field regulator,

wherein the power-system stabilization method comprises correcting a control constant of the magnetic field regulator in accordance with a power-system stability maintaining index that is an index reflecting a renewable energy amount in the power system.

22. The power-system stabilization method according to claim 21 ,

wherein the synchronous machine is a synchronous motor.

23. The power-system stabilization method according to claim 21 ,

wherein the power-system stability maintaining index is a composition ratio of renewable energy of the power system.

24. The power-system stabilization method according to claim 21 ,

wherein the power-system stability maintaining index is a voltage variation degree that indicates a variation degree of a power system voltage with respect to a reference value of the power system voltage.

25. The power-system stabilization method according to claim 21 ,

wherein a control gain of the control constant is reduced when the power-system stability maintaining index is a large value.

26. A power-system stabilization method for a power system which an electric power station is connected to, the electric power station including a synchronous machine driven by a prime mover, the prime mover being controlled by a prime mover control device,

wherein the power-system stabilization method comprises correcting a control constant of the prime mover control device in accordance with a power-system stability maintaining index that is an index reflecting a renewable energy amount in the power system.

27. The power-system stabilization method according to claim 26 ,

wherein the power-system stability maintaining index is a frequency variation degree that indicates a variation degree of a power system frequency with respect to a reference value of the power system frequency.

28. A power-system stabilization method for a power system which an electric power station is connected to, the electric power station including a reactive power compensation device including a capacitor and a power semiconductor, the reactive power compensation device being controlled by a reactive power control device,

wherein the power-system stabilization method comprises correcting a control constant of the reactive power control device in accordance with a power-system stability maintaining index that is an index reflecting a renewable energy amount in the power system.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2024
From: MITSUBISHI HEAVY INDUSTRIES, LTD.
To: MITSUBISHI GENERATOR CO., LTD.
Reel/Frame 067701/0151 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2022
From: MITSUBISHI POWER, LTD.
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 059342/0723 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2021
From: KOZAKI, TATSURO
To: MITSUBISHI POWER, LTD.
Reel/Frame 057467/0600 →