IP Library Granted Patent US 11,283,263
Granted Patent B2
US 11,283,263 · App. 15/776,722 · Granted Mar 22, 2022

Microgrid segmentation

Inventors: Ritwik Majumder (Västerås, SE); Antonis Marinopoulos (Alkmaar, NL)
Assignee: Hitachi Energy Switzerland AG
H02J3/381G05B19/042H02J3/0073H02J3/14H02J7/0026H02J13/0017G05B2219/2639H02J3/388
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Quick Facts
Patent No.
US 11,283,263
App. No.
15/776,722
Granted
Mar 22, 2022
Kind
B2
Abstract

A method of controlling a microgrid arrangement including a microgrid having a plurality of switches, and a plurality of Distributed Generators arranged for being connected to the microgrid. The method includes obtaining information about the microgrid arrangement. The method also includes, based on the obtained information, dynamically linking a first group of switches, of the plurality of switches, to each other. The method also includes detecting an event in the microgrid, and in response to the detection, automatically opening closed switches in the first group, whereby a first segment of the microgrid is disconnected from a second segment of the microgrid.

Claims (44)

1. A method of controlling a microgrid arrangement including a control arrangement and a microgrid including a plurality of switches and a plurality of Distributed Generators (DGs) arranged for being connected to the microgrid, each switch of the plurality of switches being configured to be controlled by a respective local controller, the method comprising:

obtaining information about the microgrid arrangement, wherein the obtained information includes sensor measurements on the microgrid, information related to power generation of one or more of the DGs, and/or information related to varying power quality requirements within the microgrid arrangement;

based on the obtained information, the control arrangement, dynamically over time, linking a first group of switches, of the plurality of switches, to each other, such that different switches, of the plurality of switches, are linked to each other in the first group during different time periods;

instructing the local controllers of the first group of switches that the switches of the first group are linked to each other;

after the linking, detecting an event in the microgrid; and

in response to the detection, by direct communication between the local controllers of the first group of switches, automatically opening closed switches in the first group, whereby a first segment of the microgrid is disconnected from a second segment of the microgrid.

2. The method of claim 1 , wherein at least one DG of the plurality of DGs is connected to the first segment before the event is detected.

3. The method of claim 2 , wherein the event is disconnection of the at least one DG from the first segment.

4. The method of claim 1 , wherein the event is the opening of a first switch of the first group.

5. The method of claim 4 , wherein the opening includes sending a signal from a local controller of the first switch to respective local controllers of other switches in the first group.

6. The method of claim 1 , wherein the event is an instability in the microgrid.

7. The method of claim 1 , wherein the first segment is islanded by the opening of switches in the first group.

8. The method of claim 1 , wherein obtaining the information and linking the first group of switches are performed periodically and/or continuously.

9. The method of claim 1 , further comprising, in response to the detection, automatically closing open switches in the first group.

10. A computer program product including computer-executable components for causing a control arrangement to perform the method of claim 1 when the computer-executable components are run on processor circuitry included in the control arrangement.

11. A microgrid arrangement including:

a microgrid including a plurality of switches, each switch of the plurality of switches being configured to be controlled with a respective local controller;

a plurality of Distributed Generators (DGs) arranged for being connected to the microgrid; and

a control arrangement including the respective local controllers for each of the switches, for controlling operation of the microgrid arrangement, the control arrangement including processor circuitry and storage storing instructions executable by the processor circuitry so that the control arrangement is operative to:

obtain information about the microgrid arrangement, wherein the obtained information includes sensor measurements on the microgrid, information related to power generation of one or more of the DGs, and/or information related to varying power quality requirements within the microgrid arrangement;

based on the obtained information, dynamically over time link a first group of switches, of the plurality of switches, to each other, such that different of the plurality of switches are linked to each other in the first group during different time periods, the dynamic linking of switches to each other being subject to change, update or recalculation with a predetermined periodicity, continually or in response to a change in a property or setup of the microgrid arrangement;

instruct the local controllers of the first group of switches that the switches of the first group are linked to each other;

after the linking, detect an event in the microgrid arrangement; and

in response to the detection, by direct communication between the local controllers of the first group of switches, automatically cause closed switches in the first group to open so that a first segment of the microgrid will be disconnected from a second segment of the microgrid.

12. The method of claim 6 , wherein the event is an islanding of the microgrid.

13. The method of claim 1 , wherein obtaining the information and causing the first group of switches to be linked are performed continuously.

14. A microgrid arrangement comprising:

a central controller;

a microgrid including a plurality of switches;

a plurality of local controllers, each local controller associated with a respective one of the switches; and

a plurality of Distributed Generators (DGs) arranged for being connected to the microgrid;

wherein the central controller is configured to:

obtain information about the microgrid arrangement, wherein the obtained information includes sensor measurements on the microgrid, information related to power generation of one or more of the DGs, and/or information related to varying power quality requirements within the microgrid arrangement;

based on the obtained information, cause a first group of switches of the plurality of switches to be linked to each other dynamically over time such that different switches of the plurality of switches are linked to each other in the first group during different time periods; and

instruct the local controllers of the first group of switches that the switches of the first group are linked to each other; and

wherein the local controllers associated with the switches of the first group of switches are configured to:

detect an event in the microgrid; and

in response to the detection, by direct communication between the local controllers associated with the switches of the first group of switches, automatically open closed switches in the first group such that a first segment of the microgrid will be disconnected from a second segment of the microgrid, the direct communication performed without communicating via the central controller.

15. The microgrid arrangement of claim 14 , wherein at least one DG of the plurality of DGs is connected to the first segment before the event is detected.

16. The microgrid arrangement of claim 15 , wherein the event is disconnection of the at least one DG from the first segment.

17. The microgrid arrangement of claim 14 , wherein the event is the opening of a first switch of the first group and wherein the local controllers are configured to automatically open closed switches by sending a signal from a local controller of the first switch to respective local controllers of other switches in the first group.

18. The microgrid arrangement of claim 14 , wherein the central controller is configured to obtain the information and cause the first group of switches to be linked on a periodic basis.

19. The microgrid arrangement of claim 14 , wherein the central controller is configured to obtain the information continuously and cause the first group of switches to be linked based on the obtained information.

20. The method of claim 1 , wherein the dynamic linking of switches to each other being subject to change, update or recalculation with a predetermined periodicity, continually or in response to a change in a property or setup of the microgrid arrangement.

Assignments (6)
MERGER Recorded Nov 13, 2023
From: HITACHI ENERGY SWITZERLAND AG
To: HITACHI ENERGY LTD
Reel/Frame 065548/0905 →
CHANGE OF NAME Recorded Dec 31, 2021
From: ABB POWER GRIDS SWITZERLAND AG
To: HITACHI ENERGY SWITZERLAND AG
Reel/Frame 058601/0692 →
CHANGE OF NAME Recorded Dec 9, 2021
From: ABB POWER GRIDS SWITZERLAND AG
To: HITACHI ENERGY SWITZERLAND AG
Reel/Frame 058548/0306 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2020
From: ABB SCHWEIZ AG
To: ABB POWER GRIDS SWITZERLAND AG
Reel/Frame 052916/0001 →
CHANGE OF NAME Recorded Jun 26, 2018
From: ABB TECHNOLOGY LTD
To: ABB SCHWEIZ AG
Reel/Frame 046200/0528 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2018
From: MAJUMDER, RITWIK; MARINOPOULOS, ANTONIS
To: ABB TECHNOLOGY LTD
Reel/Frame 046174/0383 →
Continuity (1)
Related Publication 20180301903A1 · Oct 18, 2018