IP Library › Granted Patent US 12,592,563
Granted Patent B2
US 12,592,563 · App. 19/024,108 · Granted Mar 31, 2026

Battery pack and energy storage system

Inventor: Yangbo Pan (Xi'an, CN)
Assignee: Huawei Digital Power Technologies Co., Ltd.
H02J3/0073H01M10/4264H02J3/32H01M2220/10
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,592,563
App. No.
19/024,108
Granted
Mar 31, 2026
Kind
B2
Abstract

A battery pack and an energy storage system. The battery pack is configured to supply power to an inverter. The battery pack includes a battery, a conversion circuit, and a black start circuit. The conversion circuit is configured to connect to the inverter through a power bus. The black start circuit includes a first auxiliary power supply, a first capacitor, a switch module, an isolation switch, and a control module.

Claims (96)

1 . A battery pack, configured to supply power to an inverter, wherein the battery pack comprises

a battery,

a conversion circuit configured to connect to the inverter through a power bus; and

a black start circuit that

comprises:

a first auxiliary power supply;

a first capacitor connected between a first input end of the first auxiliary power supply and a second input end of the first auxiliary power supply;

a switch module, wherein a first end of the switch module is connected to the battery and a second end of the switch module is connected to the first input end of the first auxiliary power supply;

an isolation switch, wherein a control end of the switch module is connected to a first end of the isolation switch and a second end of the isolation switch is connected to a positive electrode of the battery; and

a control module, wherein the second input end of the first auxiliary power supply and a negative electrode of the battery are connected to a reference ground, and

the control module is configured to:

when being powered on and a voltage of the power bus is less than a first threshold, control the conversion circuit to output electric energy stored in the battery to the inverter through the power bus;

the isolation switch is configured to:

when receiving a black start signal, connect a path between the battery and the control end of the switch module, so that the switch module connects a path between the battery and the first capacitor, to supply power to the first auxiliary power supply after a voltage of the first capacitor reaches a preset voltage; and

the first auxiliary power supply is configured to supply power to the control module after receiving the supplied power.

2 . The battery pack according to claim 1 , wherein the switch module further comprises:

a main switch,

a black start switch, and

a voltage stabilizer unit, a first end and a second end of the main switch are respectively connected to the first end and the second end of the switch module, a control end of the main switch is connected to a second end of the black start switch, a control end of the black start switch is connected to an output end of the voltage stabilizer unit, a first end of the black start switch and a common end of the voltage stabilizer unit are connected to the reference ground, and an input end of the voltage stabilizer unit is connected to the control end of the switch module, and

the voltage stabilizer unit is configured to:

when the isolation switch is turned on, output a first voltage signal to drive the black start switch to be turned on;

the black start switch is configured to:

when the black start switch is turned on, enable the control end of the main switch to receive a second voltage signal; and

the main switch is configured to be turned on when the control end of the main switch receives the second voltage signal, to connect the path between the battery and the first capacitor.

3 . The battery pack according to claim 2 , wherein the battery pack further comprises:

a second auxiliary power supply,

a first diode, and

a second diode, a positive electrode of the first diode is connected to the second end of the main switch, a negative electrode of the first diode and a negative electrode of the second diode are both connected to the first input end of the first auxiliary power supply, a positive electrode of the second diode is connected to a first output end of the second auxiliary power supply, a second output end of the second auxiliary power supply is connected to the reference ground, and an input end of the second auxiliary power supply is connected to the power bus; and

the second auxiliary power supply is configured to charge the first capacitor when an output voltage of the second auxiliary power supply is greater than an output voltage of the battery, to supply power to the first auxiliary power supply after the voltage of the first capacitor reaches the preset voltage.

4 . The battery pack according to claim 2 , wherein the black start circuit further comprises a dormancy switch, and a first end and a second end of the dormancy switch are respectively connected to the first end and the second end of the black start switch;

the black start signal ends after the black start signal lasts for preset duration, and,

when the black start signal ends, the black start switch is turned off; and

the control module is further configured to control, within the preset duration after the black start switch is turned on, the dormancy switch to be turned on, so that the control end of the main switch receives the second voltage signal.

5 . The battery pack according to claim 3 , wherein the black start circuit further comprises a dormancy switch, and a first end and a second end of the dormancy switch are respectively connected to the first end and the second end of the black start switch;

the black start signal ends after the black start signal lasts for preset duration, and,

when the black start signal ends, the black start switch is turned off; and

the control module is further configured to control, within the preset duration after the black start switch is turned on, the dormancy switch to be turned on, so that the control end of the main switch receives the second voltage signal.

6 . The battery pack according to claim 4 , wherein the control module is further configured to:

when a voltage of the battery is less than a second threshold and the dormancy switch is in a turned-on state, control the dormancy switch to be turned off; and

the main switch is further configured to be turned off when the dormancy switch and the black start switch each are in a turned-off state, so that the path between the battery and the first capacitor is disconnected.

7 . The battery pack according to claim 5 , wherein the control module is further configured to:

when a voltage of the battery is less than a second threshold and the dormancy switch is in a turned-on state, control the dormancy switch to be turned off; and

the main switch is further configured to be turned off when the dormancy switch and the black start switch each are in a turned-off state, so that the path between the battery and the first capacitor is disconnected.

8 . The battery pack according to claim 2 , further comprising:

a second auxiliary power supply configured to transmit electric energy on the power bus to the first auxiliary power supply through the first capacitor; and

a handover switch configured to

disconnect an electrical connection between the second auxiliary power supply and the first capacitor when an electrical connection between the first capacitor and the battery is connected, and

connect the electrical connection between the second auxiliary power supply and the first capacitor when the electrical connection between the first capacitor and the battery is disconnected, wherein

the control module is further configured to:

when the main switch is in a turned-on state, control the handover switch to connect the electrical connection between the first capacitor and the battery.

9 . The battery pack according to claim 8 , wherein the black start signal ends after the black start signal lasts for preset duration; and

the main switch is further configured to be turned off when the handover switch connects the electrical connection between the first capacitor and the battery and the black start signal ends.

10 . The battery pack according to claim 9 , wherein the control module is further configured to:

when a voltage of the battery is less than a second threshold and the handover switch connects the electrical connection between the first capacitor and the battery, control the handover switch to disconnect the electrical connection between the first capacitor and the battery.

11 . The battery pack according to claim 8 , wherein the second auxiliary power supply is configured to charge the first capacitor when the handover switch connects the electrical connection between the second auxiliary power supply and the first capacitor, and the voltage of the power bus is greater than a third threshold, to supply power to the first auxiliary power supply after the voltage of the first capacitor reaches the preset voltage, wherein the third threshold is greater than the first threshold.

12 . The battery pack according to claim 9 , wherein the second auxiliary power supply is configured to charge the first capacitor when the handover switch connects the electrical connection between the second auxiliary power supply and the first capacitor, and the voltage of the power bus is greater than a third threshold, to supply power to the first auxiliary power supply after the voltage of the first capacitor reaches the preset voltage, wherein the third threshold is greater than the first threshold.

13 . The battery pack according to claim 10 , wherein the second auxiliary power supply is configured to charge the first capacitor when the handover switch connects the electrical connection between the second auxiliary power supply and the first capacitor, and the voltage of the power bus is greater than a third threshold, to supply power to the first auxiliary power supply after the voltage of the first capacitor reaches the preset voltage, wherein the third threshold is greater than the first threshold.

14 . The battery pack according to claim 1 , wherein the isolation switch comprises an optical coupler.

15 . An energy storage system comprising a plurality of battery packs connected in parallel, connected to a power bus; and configured to supply power to an inverter, wherein each battery pack comprises:

a battery,

a conversion circuit configured to connect to the inverter through the power bus; and

a black start circuit that

comprises:

a first auxiliary power supply,

a first capacitor connected between a first input end of the first auxiliary power supply and a second input end of the first auxiliary power supply;

a switch module, wherein a first end of the switch module is connected to the battery and a second end of the switch module is connected to the first input end of the first auxiliary power supply;

an isolation switch, wherein a control end of the switch module is connected to a first end of the isolation switch and a second end of the isolation switch is connected to a positive electrode of the battery; and

a control module, wherein the second input end of the first auxiliary power supply and a negative electrode of the battery are connected to a reference ground;

the control module is configured to:

when being powered on and a voltage of the power bus is less than a first threshold, control the conversion circuit to output electric energy stored in the battery to the inverter through the power bus;

the isolation switch is configured to:

when receiving a black start signal, connect a path between the battery and the control end of the switch module, so that the switch module connects a path between the battery and the first capacitor, to supply power to the first auxiliary power supply after a voltage of the first capacitor reaches a preset voltage; and

the first auxiliary power supply is configured to supply power to the control module after receiving the supplied power.

16 . The energy storage system according to claim 15 , wherein the switch module further comprises:

a main switch,

a black start switch, and

a voltage stabilizer unit, a first end and a second end of the main switch are respectively connected to the first end and the second end of the switch module, a control end of the main switch is connected to a second end of the black start switch, a control end of the black start switch is connected to an output end of the voltage stabilizer unit, a first end of the black start switch and a common end of the voltage stabilizer unit are connected to the reference ground, and an input end of the voltage stabilizer unit is connected to the control end of the switch module;

the voltage stabilizer unit is configured to:

when the isolation switch is turned on, output a first voltage signal to drive the black start switch to be turned on;

the black start switch is configured to:

when the black start switch is turned on, enable the control end of the main switch to receive a second voltage signal; and

the main switch is configured to be turned on when the control end of the main switch receives the second voltage signal, to connect the path between the battery and the first capacitor.

17 . The energy storage system according to claim 16 , wherein the battery pack further comprises:

a second auxiliary power supply,

a first diode, and

a second diode, a positive electrode of the first diode is connected to the second end of the main switch, a negative electrode of the first diode and a negative electrode of the second diode are both connected to the first input end of the first auxiliary power supply, a positive electrode of the second diode is connected to a first output end of the second auxiliary power supply, a second output end of the second auxiliary power supply is connected to the reference ground, and an input end of the second auxiliary power supply is connected to the power bus; and

the second auxiliary power supply is configured to charge the first capacitor when an output voltage of the second auxiliary power supply is greater than an output voltage of the battery, to supply power to the first auxiliary power supply after the voltage of the first capacitor reaches the preset voltage.

18 . The energy storage system according to claim 16 , wherein the black start circuit further comprises:

a dormancy switch, and a first end and a second end of the dormancy switch are respectively connected to the first end and the second end of the black start switch;

the black start signal ends after the black start signal lasts for preset duration, and when the black start signal ends, the black start switch is turned off; and

the control module is further configured to control, within the preset duration after the black start switch is turned on, the dormancy switch to be turned on, so that the control end of the main switch receives the second voltage signal.

19 . The energy storage system according to claim 17 , wherein the black start circuit further comprises:

a dormancy switch, and a first end and a second end of the dormancy switch are respectively connected to the first end and the second end of the black start switch;

the black start signal ends after the black start signal lasts for preset duration, and when the black start signal ends, the black start switch is turned off; and

the control module is further configured to control, within the preset duration after the black start switch is turned on, the dormancy switch to be turned on, so that the control end of the main switch receives the second voltage signal.

20 . The battery pack according to claim 1 , wherein the isolation switch comprises a digital isolator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2025
From: PAN, YANGBO
To: HUAWEI DIGITAL POWER TECHNOLOGIES CO., LTD.
Reel/Frame 069897/0693 →
Priority Claims (1)
CN 202410122195.0 · Jan 26, 2024 · national
Continuity (1)
Related Publication 20250246908A1 · Jul 31, 2025
References Cited (10)
US 20110298424A1 · Yamauchi · 2011 [cited by examiner]
US 20130043727A1 · Liu · 2013 [cited by examiner]
US 20130088900A1 · Park · 2013 [cited by examiner]
US 20180366970A1 · Zhou · 2018 [cited by examiner]
CN 104882906A · 2015 [cited by applicant]
CN 113328453A · 2021 [cited by applicant]
CN 114567004A · 2022 [cited by applicant]
CN 114977351A · 2022 [cited by applicant]
CN 115733237A · 2023 [cited by applicant]
CN 116581862A · 2023 [cited by applicant]