IP Library Granted Patent US 12683399
Granted Patent B2
US 12683399 · App. 18/301,009 · Granted Jul 14, 2026

System and methods for managing the load profile of a low to medium voltage electric network including an energy storage system

Inventors: Alexander Brissette (Raleigh, NC); Fabio D'Agostino (Genoa, IT); Matteo Saviozzi (Albisola Superiore, IT)
Assignee: ABB Schweiz AG
H02J3/14H02J2105/52H02J2105/57
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Quick Facts
Patent No.
US 12683399
App. No.
18/301,009
Granted
Jul 14, 2026
Kind
B2
Abstract

A system for managing the load profile of an electric network is provided. The system includes: a plurality of loads, and each respective load of the plurality of loads is assigned a priority, an energy storage system, and a controller. The controller is configured to determine a predicted energy usage of the electric network at an end of a time period, based on comparing the predicted energy usage to a target energy usage, determine an adjustment of the plurality of loads based on the respective priority of each respective load. Based on the adjustment of the plurality of loads and a charge of the energy storage system, the controller dynamically assigns a priority to the energy storage system, and performs the adjustment of the plurality of loads and the energy storage system using the respective priority of each respective load and the dynamically assigned priority of the energy storage system.

Claims (64)

1 . A system for managing the load profile of a low to medium voltage electric network, the system comprising:

a plurality of loads electrically coupled to the electric network, wherein each respective load of the plurality of loads is assigned a respective priority;

an energy storage system electrically coupled to the electric network; and

a controller configured to:

determine a predicted energy usage of the electric network at an end of a time period;

based on comparing the predicted energy usage to a target energy usage, determine an adjustment of the plurality of loads based on the respective priority of each respective load;

based on the determined adjustment of the plurality of loads and a determined state of charge of the energy storage system, dynamically assign a priority to the energy storage system;

perform the adjustment of the plurality of loads and the energy storage system of the electric network using the respective priority of each respective load and the dynamically assigned priority of the energy storage system; and

wherein performing the adjustment of the plurality of loads comprises:

based on determining that the predicted energy usage is greater than the target energy usage within the time period, identifying a threshold priority level; and

determining a subset of loads from the plurality of loads, wherein the respective priority associated with each respective load of the subset of loads is less than the threshold priority level; and

causing each respective switching device associated with each respective load of the subset of loads to electrically decouple the respective load of the subset of loads from the electric network.

2 . The system of claim 1 , wherein dynamically assigning the priority to the energy storage system comprises:

based on determining that the state of charge of the energy storage system is greater than a discharge threshold, assigning a first priority to the energy storage system.

3 . The system of claim 2 , wherein dynamically assigning the priority to the energy storage system further comprises:

based on determining that the state of charge of the energy storage system is lower than a charge threshold, assigning a second priority to the energy storage system.

4 . The system of claim 3 , wherein the first priority is lower than the second priority.

5 . The system of claim 2 , wherein the performing adjustment of the energy storage system comprises:

causing the energy storage system to provide power to the electric network based on the assigned first priority.

6 . The system of claim 3 , wherein performing the adjustment of the energy storage system comprises:

causing the energy storage system to receive power from the electric network based on the assigned second priority.

7 . The system of claim 1 , wherein the predicted energy usage is determined periodically within the time period.

8 . The system of claim 1 , wherein the time period is a length of fifteen minutes.

9 . A system for managing the load profile of a low to medium voltage electric network, the system comprising:

a plurality of loads electrically coupled to the electric network, wherein each respective load of the plurality of loads is assigned a respective priority;

an energy storage system electrically coupled to the electric network; and

a controller configured to:

determine a predicted energy usage of the electric network at an end of a time period;

based on comparing the predicted energy usage to a target energy usage, determine an adjustment of the plurality of loads based on the respective priority of each respective load;

based on the determined adjustment of the plurality of loads and a determined state of charge of the energy storage system, dynamically assign a priority to the energy storage system;

perform the adjustment of the plurality of loads and the energy storage system of the electric network using the respective priority of each respective load and the dynamically assigned priority of the energy storage system; and

wherein performing the adjustment of the plurality of loads comprises:

based on determining that the predicted energy usage is less than the target energy usage within the time period, identifying a threshold priority level; and

determining a subset of loads from the plurality of loads, wherein the respective priority associated with each respective load in the subset of loads is greater than the threshold priority level; and

causing each respective switching device associated with each respective load of the subset of loads to electrically couple the respective load of the subset of loads to the electric network.

10 . A method for executing a transfer from a first power source to a second power source, the method comprising:

determining a predicted energy usage of the electric network at an end of a time period, wherein the electric network comprises a plurality of loads electrically coupled to the electric network, and wherein each respective load of the plurality of loads is assigned a respective priority;

based on comparing the predicted energy usage to a target energy usage, determining an adjustment of the plurality of loads based on the respective priority of each respective load;

based on the determined adjustment of the plurality of loads and a determined state of charge of an energy storage system electrically coupled to the electric network, dynamically assigning a priority to the energy storage system;

performing the adjustment of the plurality of loads and the energy storage system of the electric network using the respective priority of each respective load and the dynamically assigned priority of the energy storage system; and

wherein performing the adjustment of the plurality of loads comprises:

based on determining that the predicted energy usage is greater than the target energy usage within the time period, identifying a threshold priority level;

determining a subset of loads from the plurality of loads, wherein the respective priority associated with each respective load of the subset of loads is less than the threshold priority level; and

causing each respective switching device associated with each respective load of the subset of loads to electrically decouple the respective load of the subset of loads from the electric network.

11 . The method of claim 10 , wherein dynamically assigning the priority to the energy storage system comprises:

based on determining that the state of charge of the energy storage system is greater than a discharge threshold, assigning a first priority to the energy storage system.

12 . The method of claim 11 , wherein dynamically assigning the priority to the energy storage system further comprises:

based on determining that the state of charge of the energy storage system is lower than a charge threshold, assigning a second priority to the energy storage system.

13 . The method of claim 12 , wherein the first priority is lower than the second priority.

14 . The method of claim 11 , wherein the performing adjustment of the energy storage system comprises:

causing the energy storage system to provide power to the electric network based on the assigned first priority.

15 . The method of claim 12 , wherein performing the adjustment of the energy storage system comprises:

causing the energy storage system to receive power from the electric network based on the assigned second priority.

16 . The method of claim 10 , wherein the predicted energy usage is determined periodically within the time period.

17 . The method of claim 10 , wherein the time period is a length of fifteen minutes.

18 . A method for executing a transfer from a first power source to a second power source, the method comprising:

determining a predicted energy usage of the electric network at an end of a time period, wherein the electric network comprises a plurality of loads electrically coupled to the electric network, and wherein each respective load of the plurality of loads is assigned a respective priority;

based on comparing the predicted energy usage to a target energy usage, determining an adjustment of the plurality of loads based on the respective priority of each respective load;

based on the determined adjustment of the plurality of loads and a determined state of charge of an energy storage system electrically coupled to the electric network, dynamically assigning a priority to the energy storage system; and

performing the adjustment of the plurality of loads and the energy storage system of the electric network using the respective priority of each respective load and the dynamically assigned priority of the energy storage system; and

wherein performing the adjustment of the plurality of loads comprises:

based on determining that the predicted energy usage is less than the target energy usage within the time period, identifying a threshold priority level; and

determining a subset of loads from the plurality of loads, wherein the respective priority associated with each respective load in the subset of loads is greater than the threshold priority level; and

causing each respective switching device associated with each respective load of the subset of loads to electrically couple the respective load of the subset of loads to the electric network.