IP Library Patent Application 18300387
Patent Application
App. No. 18/300,387

LOW-VOLTAGE REDUNDANT POWER SUPPLY SYSTEM

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Quick Facts
Patent No.
US None
App. No.
18/300,387
Abstract

Embodiments of this application propose a low-voltage redundant power supply system, including: a high-voltage battery pack, configured to provide a first voltage and including a number of power supply units sequentially connected in series, each of the power supply units being at least one battery in the high-voltage battery pack or an equivalent power supply formed by connecting a number of batteries in series/parallel; and a relay array, with relays in the relay array connected to the power supply units in the high-voltage battery pack based on a specified connection relationship, where in at least one on/off state combination of the relay array, at least one power supply unit in the high-voltage battery pack is reused in a time-division manner to provide a second voltage to supply power to a low-voltage load; and the first voltage is higher than the second voltage.

Claims (39)

1 . A low-voltage redundant power supply system, the system comprising:

a high-voltage battery pack configured to provide a first voltage and comprising a number of power supply units connected in series, each power supply unit being at least one battery in the high-voltage battery pack or an equivalent power supply formed by connecting a number of batteries in series/parallel; and

a relay array, with relays in the relay array connected to the power supply units in the high-voltage battery pack based on a specified connection relationship;

in at least one on/off state combination of the relay array, at least one power supply unit in the high-voltage battery pack is reused in a time-division manner to provide a second voltage to supply power to a low-voltage load; and

the first voltage is higher than the second voltage.

2 . The low-voltage redundant power supply system according to claim 1 , wherein the number of power supply units comprise a first power supply unit and at least one second power supply unit, and in an on/off state combination of the relay array, the first power supply unit or the second power supply unit provides the second voltage to supply power to the low-voltage load.

3 . The low-voltage redundant power supply system according to claim 1 , wherein the number of power supply units comprise a first power supply unit and a second power supply unit, and in an on/off state combination of the relay array, the first power supply unit and at least one second power supply unit are connected in series to provide the second voltage to supply power to the low-voltage load.

4 . The low-voltage redundant power supply system according to claim 1 , wherein the number of power supply units comprise a first power supply unit and a second power supply unit, and in an on/off state combination of the relay array, the first power supply unit and the second power supply unit are connected in parallel to provide the second voltage to supply power to the low-voltage load.

5 . The low-voltage redundant power supply system according to claim 1 , wherein the system further comprises a direct current chopper, and the number of power supply units comprise a first power supply unit and a third power supply unit; the first power supply unit supplies power to the low-voltage load; and in an on/off state combination of the relay array, the first power supply unit interrupts power supply to the low-voltage load, the third power supply unit supplies power to the direct current chopper, and the direct current chopper provides the second voltage to supply power to the low-voltage load.

6 . The low-voltage redundant power supply system according to claim 1 , wherein the system further comprises a direct current chopper, and the number of power supply units comprise a first power supply unit and a third power supply unit; the first power supply unit supplies power to the low-voltage load; and in an on/off state combination of the relay array, the third power supply unit supplies power to the direct current chopper, and the direct current chopper provides the second voltage to perform balancing for the first power supply unit and to supply power to the low-voltage load.

7 . The low-voltage redundant power supply system according to claim 2 , wherein the system further comprises a direct current chopper, and the number of power supply units further comprise a third power supply unit; and in an on/off state combination of the relay array, the third power supply unit supplies power to the direct current chopper, and the direct current chopper provides the second voltage to perform balancing for the first power supply unit or the second power supply unit and to supply power to the low-voltage load.

8 . The low-voltage redundant power supply system according to claim 4 , wherein the system further comprises a direct current chopper, and the number of power supply units further comprise a third power supply unit; and in an on/off state combination of the relay array, the third power supply unit supplies power to the direct current chopper, and the direct current chopper provides the second voltage to perform balancing for the first power supply unit and the second power supply unit and to supply power to the low-voltage load.

9 . The low-voltage redundant power supply system according to claim 1 , wherein the number of power supply units comprise a first power supply unit, a second power supply unit, and a third power supply unit; the relay array comprises a first relay (HVS_ 1 ), a second relay (HVS_ 2 ), a third relay (LVS_ 1 ), and a fourth relay (LVS_ 2 ); and

the specified connection relationship comprises: the first relay (HVS_ 1 ) is connected between the first power supply unit and the second power supply unit;

the second relay (HVS_ 2 ) is connected between the second power supply unit and the third power supply unit;

a first pole of the second power supply unit is connected to a first terminal of the low-voltage load via the third relay (LVS_ 1 ); and

a second pole of the second power supply unit is connected to a second terminal of the low-voltage load via the fourth relay (LVS_ 2 ).

10 . The low-voltage redundant power supply system according to claim 1 , wherein the number of power supply units comprise a first power supply unit, a second power supply unit, and a third power supply unit; the relay array comprises a first relay (HVS_ 1 ), a second relay (HVS_ 2 ), a third relay (LVS_ 1 ), a fourth relay (LVS_ 2 ), a fifth relay (LVS_ 3 ), and a sixth relay (LVS_ 4 ); and

the specified connection relationship comprises: the first relay (HVS_ 1 ) is connected between the first power supply unit and the second power supply unit;

the second relay (HVS_ 2 ) is connected between the second power supply unit and the third power supply unit;

a first pole of the second power supply unit is connected to a first terminal of the low-voltage load via the third relay (LVS_ 1 );

a second pole of the second power supply unit is connected to a second terminal of the low-voltage load via the fourth relay (LVS_ 2 );

a first pole of the first power supply unit is connected to the first terminal of the low-voltage load via the fifth relay (LVS_ 3 ); and

a second pole of the first power supply unit is connected to the second terminal of the low-voltage load via the sixth relay (LVS_ 4 ).

11 . The low-voltage redundant power supply system according to claim 1 , wherein the number of power supply units comprise a first power supply unit, a second power supply unit, and a third power supply unit; the relay array comprises a first relay (HVS_ 1 ), a second relay (HVS_ 2 ), a third relay (LVS_ 1 ), a fourth relay (LVS_ 2 ), a fifth relay (LVS_ 3 ), and a sixth relay (LVS_ 4 ); and

the specified connection relationship comprises: the first relay (HVS_ 1 ) is connected between the first power supply unit and the second power supply unit;

the second relay (HVS_ 2 ) is connected between the second power supply unit and the third power supply unit;

a first pole of the second power supply unit is connected to a first terminal of the low-voltage load via the third relay (LVS_ 1 );

a second pole of the second power supply unit is connected to a second pole of the first power supply unit via the fourth relay (LVS_ 2 );

a first pole of the first power supply unit is connected to the first terminal of the low-voltage load via the fifth relay (LVS_ 3 ); and

a second pole of the first power supply unit is connected to the second terminal of the low-voltage load via the sixth relay (LVS_ 4 ).

12 . The low-voltage redundant power supply system according to claim 9 , wherein the system further comprises a direct current chopper; the relay array further comprises a seventh relay (HVS_ 3 ) and an eighth relay (HVS_Pos); and

the specified connection relationship further comprises:

the eighth relay (HVS_Pos) is connected between a first pole of the third power supply unit and a first pole on an input side of the direct current chopper;

the seventh relay (HVS_ 3 ) is connected between a second pole of the third power supply unit and a second pole on the input side of the direct current chopper;

the second relay (HVS_ 2 ) is connected between the second pole on the input side of the direct current chopper and the first pole of the second power supply unit;

the seventh relay (HVS_ 3 ) is connected to the second relay (HVS_ 2 ) in series and to the first pole of the second power supply unit; and

the low-voltage load is connected between a first pole and a second pole on an output side of the direct current chopper.

13 . The low-voltage redundant power supply system according to claim 9 , wherein the second relay (HVS_ 2 ) is a linkage relay, and comprises a first linkage unit (HVS_ 2 ′) and a second linkage unit (HVS_ 2 ″); and the second relay (HVS_ 2 ) is connected to the second pole of the first power supply unit via the second linkage unit (HVS_ 2 ″) and the first linkage unit (HVS_ 2 ′).

Assignments (3)
CHANGE OF NAME Recorded May 1, 2026
From: SHENZHEN YINWANG INTELLIGENT TECHNOLOGIES CO., LTD.
To: YINWANG INTELLIGENT TECHNOLOGIES CO., LTD.
Reel/Frame 075316/0074 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2024
From: HUAWEI TECHNOLOGIES CO., LTD.
To: SHENZHEN YINWANG INTELLIGENT TECHNOLOGIES CO., LTD.
Reel/Frame 069336/0125 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2023
From: WANG, HUI; YANG, LULU; SUN, JIAN; SONG, TIANZHU
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 063941/0007 →