IP Library › Granted Patent US 11,936,188
Granted Patent B2
US 11,936,188 · App. 17/278,128 · Granted Mar 19, 2024

Hybrid power plant and a method for controlling a hybrid power plant

Inventors: Henrik Møller (Egå, DK); Mads Rajczyk Skjelmose (Risskov, DK)
Assignee: VESTAS WIND SYSTEMS A/S
H02J3/381H02J3/46H02J2300/24H02J2300/28
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Quick Facts
Patent No.
US 11,936,188
App. No.
17/278,128
Granted
Mar 19, 2024
Kind
B2
Abstract

The invention relates to a hybrid power plant for producing power to the electrical grid, the hybrid power plant comprising a plurality of energy assets; a first renewable power generating unit, such as wind turbine generators, a second renewable power generating unit, such as a plurality of solar power units, and an energy storage unit, such as a battery energy storage system. A power plant controller is arranged to perform a first comparison of an active power reference with an available power from the first and the second renewable power generating units and performing a second comparison of available charging, or discharging, capability of the energy storage unit with said first comparison. In response to this first comparison, set points are distributed to the first and the second renewable power generating units so as to deliver power from the hybrid power plant in accordance with the received active power reference.

Claims (58)

1. A hybrid power plant connected to an associated electrical grid for producing power to said electrical grid, the hybrid power plant comprising a plurality of energy assets, the plurality of energy assets comprising:

a first renewable power generating unit, said first renewable power generating unit comprises a plurality of wind turbine generators,

a second renewable power generating unit, wherein the second renewable power generating unit is different from the first renewable power generating unit, and

an energy storage unit, said energy storage unit being capable of storing energy from said first and second renewable power generating units, and delivering power to said electrical grid when required,

wherein the hybrid power plant further comprises a power plant controller arranged to communicate with the plurality of energy assets, the power plant controller being arranged for

receiving an active power reference and performing a first comparison of said active power reference with an available power from said first renewable power generating unit and said second renewable power generating unit, wherein the available power is defined by power which a given renewable power generating unit is able to produce, and

performing a second comparison of an available charging, or discharging, capability of the energy storage unit with a result of said first comparison, and distributing a corresponding set point to said energy storage unit, and

the power plant controller further being arranged, in response to the result of said first comparison, for distributing set points to said first renewable power generating unit and said second renewable power generating unit, respectively,

so as to deliver power from the hybrid power plant in accordance with the received active power reference, and

wherein the power plant controller is further arranged for distributing set points to at least one of said first renewable power generating unit and said second renewable power generating unit, respectively, that are above the available power from said first renewable power generating unit and said second renewable power generating unit.

2. The hybrid power plant according to claim 1 , wherein, when said first comparison of said active power reference with the available power results in said active power reference being larger than the available power indicating a lack of power, the power plant controller, depending on the second comparison, is arranged for distributing a corresponding set point to the energy storage unit for, at least partly, compensating said lack of power by discharging the energy storage unit.

3. The hybrid power plant according to claim 2 , wherein a result of said second comparison indicates that the available charging, or discharging, capability from the energy storage unit is sufficient for compensating the lack of power indicated by the first comparison, and the power plant controller is arranged for distributing a corresponding set point to said energy storage unit.

4. The hybrid power plant according to claim 2 , wherein a result of said second comparison indicates that the available charging, or discharging, capability from the energy storage unit is not sufficient for compensating the lack of power indicated by the first comparison, and the power plant controller is arranged for distributing a corresponding set point to said energy storage unit for compensating the lack of power to an extent possible by the available charging, or discharging, capability.

5. The hybrid power plant according to claim 1 , wherein the set points above the available power are independent of said second comparison.

6. The hybrid power plant according to claim 5 , wherein the set points to at least one of said first renewable power generating unit and said second renewable power generating unit, respectively, are equal to the active power reference.

7. The hybrid power plant according to claim 1 , wherein, when said first comparison of said active power reference with the available power results in said active power reference being smaller than the available power indicating an excess of power, the power plant controller, depending on a result of the second comparison, is arranged for distributing a corresponding set point to the energy storage unit for charging the energy storage unit to an extent possible.

8. The hybrid power plant according to claim 7 , wherein the power plant controller, depending on the result of the second comparison, is arranged for distributing a corresponding set point to the energy storage unit for charging the energy storage unit with a full, or a partly, charging capability of the energy storage unit, and for distributing corresponding set points to said first renewable power generating unit and said second renewable power generating unit, respectively.

9. The hybrid power plant according to claim 7 , wherein the power plant controller is further arranged, in response to the result of said second comparison, for distributing set points to said first renewable power generating unit and said second renewable power generating unit, respectively, so as to deliver power from the hybrid power plant in accordance with the received active power reference.

10. The hybrid power plant according to claim 1 , wherein the power plant controller is arranged for receiving the active power reference, and, using a hybrid active power controller, calculates a hybrid power plant reference based on a desired mode of operation of the hybrid power plant, and the power plant controller being arranged for performing said first comparison of said hybrid power plant reference with the available power from said first renewable power generating unit and said second renewable power generating unit.

11. The hybrid power plant according to claim 1 , wherein the available power from said first renewable power generating unit and said second renewable power generating unit is, at least partly, based on at least one of a meteorological condition, a forecast for a wind condition, a forecast for said first renewable power generating unit, and a forecast for said second renewable power generating unit.

12. The hybrid power plant according to claim 1 , the hybrid power plant further comprises:

a module for deriving an estimated value for electrical losses in the hybrid power plant;

a module for deriving a measured value for electrical losses in the hybrid power plant, based on a difference between an aggregated power production from the plurality of energy assets and a power measurement at a point of common coupling; and

a regulator arranged to apply the estimated value for electrical losses and the measured value for electrical losses in an active power control loop in the power plant controller, the active power control loop being arranged to control an active power production of the hybrid power plant at the point of common coupling, and

wherein the available power from said first renewable power generating unit and said second renewable power generating unit is calculated using said regulator.

13. A method for controlling a hybrid power plant, the hybrid power plant being connected to an electrical grid for producing power to said electrical grid, the hybrid power plant comprising a plurality of energy assets, the plurality of energy assets comprising:

a first renewable power generating unit, said first renewable power generating unit comprises a plurality of wind turbine generators,

a second renewable power generating unit, wherein the second renewable power generating unit being different from first renewable power generating unit, and

an energy storage unit, said energy storage unit being capable of storing energy from said first and second renewable power generating units, and delivering power to said electrical grid when required,

wherein the method comprises:

controlling a power plant controller to communicate with the plurality of energy assets, the power plant controller being arranged for receiving an active power reference,

performing a first comparison of said active power reference with an available power from said first renewable power generating unit and said second renewable power generating unit, wherein the available power is defined by power which a given renewable power generating unit is able to produce,

performing a second comparison of an available charging, or discharging, capability of the energy storage unit with a result of said first comparison, and distributing a corresponding set point to said energy storage unit, and

distributing set points to said first renewable power generating unit and said second renewable power generating unit, respectively, in response to the result of said first comparison, so as to deliver power from the hybrid power plant in accordance with the received active power reference, and

wherein performing said first comparison of said active power reference with the available power results in said active power reference being smaller than the available power indicating an excess of power available for charging said energy storage unit, and in response to a charging request, the corresponding set point distributed to said energy storage unit is set so that power delivered to the energy storage unit exceeds the excess of power.

14. A power plant controller for controlling an associated hybrid power plant connected to an associated electrical grid for producing power to said electrical grid, the hybrid power plant comprising a plurality of energy assets, the plurality of energy assets comprising:

a first renewable power generating unit, said first renewable power generating unit comprises a plurality of wind turbine generators,

a second renewable power generating unit, wherein the second renewable power generating unit being different from said first renewable power generating unit, and

an energy storage unit, said energy storage unit being capable of storing energy from said first and second renewable power generating units, and delivering power to said electrical grid when required,

wherein the power plant controller is arranged to communicate with the plurality of energy assets, the power plant controller being arranged for

receiving an active power reference and performing a first comparison of said active power reference with an available power from said first renewable power generating unit and said second renewable power generating unit, wherein the available power is defined by power which a given renewable power generating unit is able to produce, and

performing a second comparison of an available charging, or discharging, capability of the energy storage unit with a result of said first comparison, and distributing a corresponding set point to said energy storage unit, and

the power plant controller further being arranged, in response to the result of said first comparison, for distributing set points to said first renewable power generating unit and said second renewable power generating unit, respectively,

so as to deliver power from the hybrid power plant in accordance with the received active power reference, and

wherein the power plant controller comprises:

a module for deriving an estimated value for electrical losses in the hybrid power plant;

a module for deriving a measured value for electrical losses in the hybrid power plant, based on a difference between an aggregated power production from the plurality of energy assets and a power measurement at a point of common coupling; and

a regulator arranged to apply the estimated value for electrical losses and the measured value for electrical losses in an active power control loop in the power plant controller, the active power control loop being arranged to control an active power production of the hybrid power plant at the point of common coupling, and

wherein the available power from said first renewable power generating unit and said second renewable power generating unit is calculated using said regulator.

15. A non-transitory computer readable medium containing a program which, when executed by one or more processors, performs an operation, comprising:

controlling a power plant controller to communicate with a plurality of energy assets of a hybrid power plant, the power plant controller being arranged for receiving an active power reference;

performing a first comparison of said active power reference with an available power from a first renewable power generating unit of the hybrid power plant and a second renewable power generating unit of the hybrid power plant, wherein the available power is defined by power which a given renewable power generating unit is able to produce, wherein the first renewable power generating unit comprises a plurality of wind turbine generators and the second renewable power generating unit comprises a plurality of solar power units;

performing a second comparison of an available charging, or discharging, capability of an energy storage unit with a result of said first comparison, and distributing a corresponding set point to said energy storage unit; said energy storage unit comprising a battery energy storage system, said energy storage unit being capable of storing energy from said first and second renewable power generating units, and delivering power to an electrical grid when required; and

distributing set points to said first renewable power generating unit and said second renewable power generating unit, respectively, in response to the result of said first comparison, so as to deliver power from the hybrid power plant in accordance with the received active power reference, and

wherein the power plant controller is further arranged for distributing set points to at least one of said first renewable power generating unit and said second renewable power generating unit, respectively, that are above the available power from said first renewable power generating unit and said second renewable power generating unit.

16. The hybrid power plant according to claim 1 , wherein performing said first comparison of said active power reference with the available power results in said active power reference being smaller than the available power indicating an excess of power available for charging said energy storage unit, and in response to a charging request, the corresponding set point distributed to said energy storage unit is set so that power delivered to the energy storage unit exceeds the excess of power.

17. The hybrid power plant according to claim 1 , wherein said second renewable power generating unit comprises a plurality of solar power units.

18. The hybrid power plant according to claim 1 , wherein said energy storage unit comprises a battery energy storage system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2021
From: MØLLER, HENRIK; SKJELMOSE, MADS RAJCZYK
To: VESTAS WIND SYSTEMS A/S
Reel/Frame 057045/0274 →
Priority Claims (1)
DK 2018 70611 · Sep 19, 2018 · national
Continuity (1)
Related Publication 20210336443A1 · Oct 28, 2021