IP Library Granted Patent US 9,548,693
Granted Patent B2
US 9,548,693 · App. 13/655,131 · Granted Jan 17, 2017

Methods and voltage regulator for power distribution in a hybrid system

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Quick Facts
Patent No.
US 9,548,693
App. No.
13/655,131
Granted
Jan 17, 2017
Kind
B2
Abstract

Methods and a voltage regulator are provided for distributing power sourcing in a hybrid power plant system. The voltage regulator is configured to monitor an output power of a generator and control an excitation signal provided to the generator based at least in part on the generator output power.

Claims (37)

1. A voltage regulator configured to:

monitor an output power supplied from a generator to a load;

compare the generator, output power to an active power limit;

regulate voltage supplied to the generator at or below a first predefined voltage limit when the monitored generator output power is less than or equal to the active power limit; and

decrease voltage supplied to the generator below a second predefined voltage limit lower than the first predefined voltage limit while controlling the generator to output a constant amount of power when the monitored generator output power exceeds the active power limit to lower the generator output voltage, causing sharing of power-sourcing of the load between the generator and a passive secondary power source, the passive secondary power source coupled in parallel with the generator to provide supplemental power to the load.

2. The voltage regulator of claim 1 , further configured to:

measure an output voltage and an output current of the generator; and

calculate the generator output power based on the measured output voltage and output current.

3. The voltage regulator of claim 1 , wherein to control an excitation signal provided to the generator, said voltage regulator is configured to:

share sourcing of the generator output power with the secondary power source.

4. The voltage regulator of claim 1 , wherein to control an excitation signal provided to the generator, said voltage regulator is configured to:

distribute sourcing of the generator output power with a direct current (DC) secondary power source.

5. The voltage regulator of claim 1 , further configured to:

regulate the generator output voltage in accordance with a voltage set-point when the generator output power does not exceed the active power limit.

6. A method of distributing active power sourcing for a load between a generator coupled in parallel to a secondary power source, said method comprising:

monitoring an output power supplied from the generator to the load;

comparing the generator output power to an active power limit;

regulating voltage supplied to the generator at or below a first predefined voltage limit when the monitored generator output power is less than or equal to the active power limit; and

decreasing voltage supplied to the generator using the voltage regulator below a second predefined voltage limit lower than the first predefined voltage limit while controlling the generator to output a constant amount of power when the monitored generator output power exceeds the active power limit to lower the generator output voltage, causing sharing of power-sourcing of the load the generator and the secondary power source, the secondary power source configured to provide supplemental power to the load.

7. The method of claim 6 , further comprising:

measuring an output voltage and an output current of the generator; and

calculating the generator output power based on the measured output voltage and output current using a voltage regulator.

8. The method of claim 6 , further comprising:

comparing the generator output power to an active power limit using a voltage regulator; and

using the voltage regulator to limit the output power of the generator when the generator output power exceeds the active power limit.

9. The method of claim 8 , wherein limiting the output power of the generator comprises preventing an undervoltage condition of the generator output power.

10. A hybrid power plant system comprising:

a generator configured to produce an electrical output to drive a load;

a secondary power source coupled in parallel to said generator, said secondary power source configured to provide supplemental power to the load to assist said generator during peak power demand of the load; and

a voltage regulator coupled to said generator, said voltage regulator configured to:

monitor an output power supplied from said generator to the load;

regulate voltage supplied to said generator at or below a first predefined voltage limit when the monitored generator output power is less than or equal to an active power limit; and

decrease voltage supplied to the generator below a second predefined voltage limit lower than the first predefined voltage limit while controlling the generator to output a constant amount of power when the monitored generator output power exceeds the active power limit to lower the generator output voltage, causing sharing of power-sourcing of the load between said generator and said secondary power source during peak power demand.

11. The system of claim 10 , wherein said voltage regulator is further configured to:

measure an output voltage and an output current of said generator; and

calculate said generator output power based on the measured output voltage and output current.

12. The system of claim 10 , wherein said generator comprises a synchronous generator, and said secondary power source comprises an asynchronous power source.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2013
From: RBC MANUFACTURING CORPORATION
To: REGAL BELOIT AMERICA, INC.
Reel/Frame 029582/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2012
From: HYYPIO, DAVID BRUCE; MYCHAL, MYRON ROMAN
To: RBC MANUFACTURING CORPORATION
Reel/Frame 029157/0478 →