IP Library Granted Patent US 11,909,213
Granted Patent B1
US 11,909,213 · App. 18/243,265 · Granted Feb 20, 2024

Energy storage system and method of operation thereof

Inventors: Hyun Jae Kang (Seoul, KR); Seung Sig Nam (Gyeonggi-do, KR); Tay Seek Lee (Gyeonggi-do, KR); Seong Ho Yun (Seoul, KR); Hee Se Hong (Gyeonggi-do, KR)
Assignee: EN TECHNOLOGIES INC.
H02J3/32H02J3/003H02J3/381H02J2203/10H02J2203/20H02J2300/20
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Quick Facts
Patent No.
US 11,909,213
App. No.
18/243,265
Granted
Feb 20, 2024
Kind
B1
Abstract

An energy storage system includes an energy storage device that stores energy generated from a new and renewable energy power plant, a power management device that monitors an amount of power of the new and renewable energy power plant, determines an operation mode of the energy storage device based on a result of monitoring a reference capacity of a line connected to the new and renewable energy plant and the amount of power, and controls a power capacity flowing through the line according to the operation mode, and a power conversion device that receives a command corresponding to the operation mode from the power management device and controls an operation of the energy storage device according to the command.

Claims (44)

1. An energy storage system comprising:

an energy storage device configured to store energy generated from a new and renewable energy power plant;

a power management device configured to monitor an amount of power of the new and renewable energy power plant, determine an operation mode of the energy storage device based on a result of monitoring a reference capacity of a line connected to the new and renewable energy plant and the amount of power, and control a power capacity flowing through the line according to the operation mode; and

a power conversion device configured to receive a command corresponding to the operation mode from the power management device and control an operation of the energy storage device according to the command,

wherein the power management device is further configured to

obtain history information on the amount of power produced by the new and renewable energy power plant,

predict an amount of power corresponding to a condition, which is based on a storage capacity of the energy storage device and the reference capacity of the line, of a new and renewable energy power plant to be newly installed using the condition and the history information, and

generate modeling information including information about a type of the new renewable energy power plant to be newly installed and an operational schedule corresponding to the type, based on the predicted amount of power.

2. The energy storage system of claim 1 , wherein the power management device is further configured to:

determine the operation mode of the energy storage device as a charging mode when the amount of power of the new and renewable energy plant exceeds the reference capacity of the line; and

determine the operation mode of the energy storage device as a discharging mode when the amount of power of the new and renewable energy power plant does not exceed the reference capacity of the line.

3. The energy storage system of claim 1 , wherein, when the new and renewable energy power plant is a plurality of power plants, the power management device is configured to monitor the amount of power produced by the plurality of power plants and determine whether or not the operation mode of the energy storage device is a charging mode for each of the plurality of power plants.

4. The energy storage system of claim 1 , wherein, when the operation mode is determined as a charging mode, the power management device is configured to deliver a first command, which is for controlling excess power of the amount of power exceeding the reference capacity of the line to be stored in the energy storage device, to the power conversion device.

5. The energy storage system of claim 1 , wherein, when the operation mode is determined as a discharging mode, the power management device is configured to deliver a second command, which is for discharging power charged in the energy storage device based on the amount of power of the new and renewable energy power plant so that the power capacity flowing through the line is as large as the reference capacity, to the power conversion device.

6. The energy storage system of claim 1 , wherein, when a newly installed new and renewable energy power plant other than the new and renewable energy power plant is connected to the energy storage system and the line, the power management device is configured to determine the operation mode of the energy storage device based on a result of monitoring the amount of power of the new and renewable energy power plant and the newly installed new and renewable energy power plant and the reference capacity of the line.

7. The energy storage system of claim 1 , wherein the modeling information is transmitted to an operator's management device.

8. The energy storage system of claim 1 , wherein the power management device is further configured to:

obtain information on the amount of power produced for a preset period by the new and renewable energy power plant;

calculate an average amount of power for the preset period based on information on the amount of power; and

predict the amount of power corresponding to the condition of the renewable energy power plant to be newly installed, based on the average amount of power of the new and renewable energy plant, the storage capacity of the energy storage device, and the reference capacity of the line.

9. The energy storage system of claim 1 , wherein the energy storage device includes:

a battery configured to discharge charged power or charge power, through the power conversion device according to the operation mode; and

a battery management module configured to manage state information of the battery.

10. A method of operation of an energy storage system, the method comprising:

monitoring an amount of power of a new and renewable energy power plant;

determining an operation mode of an energy storage device based on a result of monitoring a reference capacity of a line connected to the new and renewable energy plant and the amount of power;

controlling a power capacity flowing through the line according to the operation mode;

obtaining history information on the amount of power produced by the new and renewable energy power plant;

predicting an amount of power corresponding to a condition, which is based on a storage capacity of the energy storage device and the reference capacity of the line, of a new and renewable energy power plant to be newly installed using the condition and the history information; and

generating modeling information including information about a type of the new renewable energy power plant to be newly installed and an operational schedule corresponding to the type, based on the predicted amount of power.

11. The method of claim 10 , wherein the determining of the operation mode of the energy storage device includes:

determining the operation mode of the energy storage device as a charging mode when the amount of power of the new and renewable energy plant exceeds the reference capacity of the line; and

determining the operation mode of the energy storage device as a discharging mode when the amount of power of the new and renewable energy plant does not exceed the reference capacity of the line.

12. The method of claim 10 , wherein the controlling of the power capacity flowing through the line according to the operation mode includes:

delivering a first command, which is for controlling excess power of the amount of power exceeding the reference capacity of the line to be stored in the energy storage device, to the power conversion device when the operation mode is determined as a charging mode; and

transmitting a second command, which is for discharging power charged in the energy storage device based on the amount of power of the new and renewable energy power plant so that the power capacity flowing through the line is as large as the reference capacity, to the power conversion device when the operation mode is determined to be a discharging mode.

13. A power system comprising:

a new and renewable energy power plant;

a line connected to the new and renewable energy power plant and configured to supply generated power to an electrical power system; and

an energy storage system that is connected to the line and is configured to monitor an amount of power of the new and renewable energy power plant, determine an operation mode of an energy storage device based on a result of monitoring a reference capacity of the line and the amount of power, and control a power capacity flowing through the line according to the operation mode,

wherein the energy storage system is configured to:

obtain history information on the amount of power produced by the new and renewable energy power plant;

predict an amount of power corresponding to a condition, which is based on a storage capacity of the energy storage device and the reference capacity of the line, of a new and renewable energy power plant to be newly installed using the condition and the history information; and

generate modeling information including information about a type of the new renewable energy power plant to be newly installed and an operational schedule corresponding to the type, based on the predicted amount of power.

Assignments (2)
SECURITY INTEREST Recorded Jul 31, 2025
From: EN TECHNOLOGIES INC.
To: GURU CORPORATE TURNAROUND PRIVATE EQUITY FUND
Reel/Frame 072680/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2023
From: KANG, HYUN JAE; NAM, SEUNG SIG; LEE, TAY SEEK; YUN, SEONG HO; HONG, HEE SE
To: EN TECHNOLOGIES INC.
Reel/Frame 064828/0262 →
Priority Claims (1)
KR 10-2022-0113416 · Sep 7, 2022 · national