IP Library Granted Patent US 11,637,445
Granted Patent B2
US 11,637,445 · App. 17/178,221 · Granted Apr 25, 2023

Method for operating an electric island power network

Inventors: Christian Olenberger (Sankt Augustin, DE); Björn Häckel (Sankt Augustin, DE); Stephan Berger (Augsburg, DE); Michael Raila (Buchdorf, DE)
Assignee: FRAUNHOFER-GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG E. V. MAN ENERGY SOLUTIONS SE
H02J13/00002H02J1/14H02J3/388H02J2300/24H02J2300/28
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Quick Facts
Patent No.
US 11,637,445
App. No.
17/178,221
Granted
Apr 25, 2023
Kind
B2
Abstract

A method for operating an electric island power network having a renewable energy generation plant, a conventional energy generation plant, an energy store, and an energy consumer, includes: defining first operating parameters for the network for when a frequency and/or voltage of the network is outside defined limits; operating the network using the first operating parameters causing the frequency and voltage of the network to both be within the defined limits; defining second operating parameters for the network after the expiration of a defined time span over which the frequency and voltage have remained within the defined limits, the second operating parameters being defined such that operating the network using the second operating parameters causes the network to operate cost-optimally. If verified that the second operating parameters ensure that the frequency and voltage remain within the defined limits, operation using the second operating parameters is maintained. Otherwise, it is discontinued.

Claims (22)

1. A method for operating an electric island power network ( 10 ) having at least one energy generation plant ( 11 , 12 ) based on renewable energy sources, at least one energy generation plant ( 13 ) based on conventional energy sources, at least one energy store ( 14 ) and at least one energy consumer ( 15 , 16 ), the method comprising:

defining first operating parameters ( 25 ) for the island power network ( 10 ) in an event-controlled manner in a case in which a frequency of the island power network ( 10 ) and/or a voltage of the island power network ( 10 ) is outside defined limits, the first operating parameters ( 25 ) being defined such that operating the island power network ( 10 ) under the first operating parameters ( 25 ) causes the frequency of the island power network ( 10 ) and the voltage of the island power network ( 10 ) to both be within the defined limits;

defining second operating parameters ( 30 ) for the island power network ( 10 ) in a time-controlled manner after the expiration of a defined time span over which the frequency of the island power network ( 10 ) and the voltage of the island power network ( 10 ) have remained within the defined limits, the second operating parameters ( 30 ) being defined such that operating the island power network ( 10 ) under the second operating parameters ( 30 ) causing the island power network ( 10 ) to operate such that the island power network ( 10 ) is cost-optimally operated;

verifying, following the definition of the second operating parameters ( 30 ) for the cost-optimal operation of the island power network ( 10 ), as to whether the second operating parameters ( 30 ) ensure that the frequency of the island power network ( 10 ) and the voltage of the island power network ( 10 ) are still within the defined limits;

maintaining operation of the island power network ( 10 ) based on the second operating parameters ( 30 ) if it is verified that the frequency of the island power network ( 10 ) and the voltage of the island power network ( 10 ) are still within the defined limits; and

discontinuing operation based on the second operating parameters ( 30 ) of the island power network ( 10 ) if the frequency of the island power network ( 10 ) and the voltage of the island power network ( 10 ) are outside of the defined limits such that the island power network ( 10 ) is not cost-optimally operated.

2. The method according to claim 1 , wherein the first operating parameters ( 25 ) are determined so as to ensure a balance between a requested electric power and an available electric power, prioritizing the energy generation plants ( 11 , 12 , 13 ) and the at least one energy store ( 14 ).

3. The method according to claim 2 , wherein

the at least one energy generation plant ( 11 , 12 ) based on renewable energy sources is utilized with a higher priority for providing the requested electric power than the at least one energy store ( 14 ), and

the at least one energy store ( 14 ) is utilized with a higher priority for providing the requested electric power than the at least one energy generation plant ( 13 ) based on conventional energy sources.

4. The method according to claim 3 , wherein

the requested electric power comprises an active power component and a reactive power component,

initially power potentials of the at least one energy generation plant ( 11 , 12 ) based on renewable energy sources, then power potentials of the at least one energy store ( 14 ) and, if necessary, power potentials of the at least one energy generation plant ( 13 ) based on conventional energy sources are utilized for providing the active power component of the requested electric power,

in a case in which the reactive power provided deviates from the reactive power component of the requested electric power by more than a limit value, the provided reactive power is adjusted by changing the operation of the at least one energy store ( 14 ) so that the provided reactive power deviates from the reactive power component of the requested electric power by not more than the limit value.

5. The method according to claim 1 , wherein

the first operating parameters ( 25 ) are determined heuristically.

6. The method according to claim 1 , wherein

the second operating parameters ( 30 ) are determined through optimization of a cost function.

7. The method according to claim 6 , wherein

during the optimization of the cost function the at least one energy generation plant ( 11 , 12 ) based on renewable energy sources is always maximally utilized for providing the requested electric power, and with respect to the cost function, the costs of the at least one energy generation plant ( 11 , 12 ) based on renewable energy sources are not taken into account.

8. The method according to claim 1 , wherein

the second operating parameters ( 30 ) following a renewed definition of the first operating parameters ( 25 ) are only determined after expiration of a defined waiting time.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2025
From: MAN ENERGY SOLUTIONS SE
To: EVERLLENCE SE
Reel/Frame 072914/0273 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2021
From: OLENBERGER, CHRISTIAN; HACKEL, BJORN; BERGER, STEPHAN; RAILA, MICHAEL
To: FRAUNHOFER-GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG E. V.; MAN ENERGY SOLUTIONS SE
Reel/Frame 056003/0172 →
Priority Claims (1)
DE 10 2020 104 324.4 · Feb 19, 2020 · national
Continuity (1)
Related Publication 20210257853A1 · Aug 19, 2021