IP Library Patent Application 18412262
Patent Application
App. No. 18/412,262

CHARGE-AND-DISCHARGE CIRCUIT, CHARGE-AND-DISCHARGE SYSTEM AND CHARGE-AND-DISCHARGE CONTROL METHOD

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Patent No.
US None
App. No.
18/412,262
Abstract

A charge-and-discharge circuit, a charge-and-discharge system and a charge-and-discharge control method are provided. The charge-and-discharge circuit includes: a power supply module including at least a first battery pack; an inverter module including an M-phase bridge arm, where M is a positive integer greater than 0; a charge-and-discharge control module including a charge-and-discharge loop switch bridge arm; and a drive module including an M-phase motor. The first battery pack, the M-phase bridge arm, and the charge-and-discharge loop switch bridge arm are connected in parallel. Junction points between upper and lower bridge arms of the M-phase bridge arm are respectively connected to M phases of windings of the M-phase motor in a one-to-one correspondence manner. A junction point between upper and lower bridge arms of the charge-and-discharge loop switch bridge arm are connected to the M-phase motor.

Claims (56)

1 . A charge-and-discharge circuit, comprising:

a power supply module, comprising at least a first battery pack;

an inverter module, comprising an M-phase bridge arm, wherein M is a positive integer greater than 0;

a charge-and-discharge control module, comprising a charge-and-discharge loop switch bridge arm; and

a drive module, comprising an M-phase motor;

wherein,

the first battery pack, the M-phase bridge arm and the charge-and-discharge loop switch bridge arm are connected in parallel;

junction points between upper bridge arms and lower bridge arms of the M-phase bridge arm are respectively connected to M phases of windings of the M-phase motor in a one-to-one correspondence manner; and

a junction point between an upper bridge arm and a lower bridge arm of the charge-and-discharge loop switch bridge arm is connected to the M-phase motor.

2 . The charge-and-discharge circuit according to claim 1 , wherein at least one external inductance unit is arranged between the M-phase motor and the charge-and-discharge loop switch bridge arm.

3 . The charge-and-discharge circuit according to claim 2 , wherein the junction point between the upper bridge arm and the lower bridge arm of the charge-and-discharge loop switch bridge arm connecting to the M-phase motor comprises that:

the junction point between the upper bridge arm and the lower bridge arm of the charge-and-discharge loop switch bridge arm is connected to one end of the at least one external inductance unit, and the other end of the at least one external inductance unit is connected to a common junction point of the M phases of windings of the M-phase motor.

4 . The charge-and-discharge circuit according to claim 1 ,

wherein the M-phase motor is a dual-motor comprising a first M-phase motor and a second M-phase motor; and

wherein a common junction point of M phases of windings of the first M-phase motor is connected to a common junction point of M phases of windings of the second M-phase motor.

5 . The charge-and-discharge circuit according to claim 4 , wherein the junction points between the upper bridge arms and the lower bridge arms of the M-phase bridge arm are respectively connected to the M phases of windings of the M-phase motor in a one-to-one correspondence manner comprises that:

the junction points between the upper bridge arms and the lower bridge arms of the M-phase bridge arm are respectively connected to the M phases of windings of the first M-phase motor in a one-to-one correspondence manner.

6 . The charge-and-discharge circuit according to claim 4 , wherein the junction point between the upper bridge arm and the lower bridge arm of the charge-and-discharge loop switch bridge arm is connected to the M-phase motor comprises that:

junction points between upper bridge arms and lower bridge arms of the charge-and-discharge loop switch bridge arm are respectively connected to the M phases of windings of the second M-phase motor in a one-to-one correspondence manner.

7 . A charge-and-discharge circuit, comprising:

a power supply module, comprising at least a first battery pack and a second battery pack;

an inverter module, comprising an M-phase bridge arm, wherein M is a positive integer greater than 0;

a charge-and-discharge control module, comprising a charge-and-discharge loop switch bridge arm;

a drive module, comprising an M-phase motor; and

a switch unit;

wherein,

the first battery pack and the M-phase bridge arm are connected in parallel, wherein a first end of the first battery pack and upper bridge arms of the M-phase bridge arm are collinearly connected;

junction points between lower bridge arms and the upper bridge arms of the M-phase bridge arm are respectively connected to M phases of windings of the M-phase motor in a one-to-one correspondence manner;

a junction point between an upper bridge arm and a lower bridge arm of the charge-and-discharge loop switch bridge arm is connected to the M-phase motor;

a first end of the second battery pack and the upper bridge arm of the charge-and-discharge loop switch bridge arm are collinearly connected;

a second end of the second battery pack, a second end of the first battery pack, the lower bridge arms of the M-phase bridge arm and the charge-and-discharge loop switch bridge arm are collinearly connected; and

the switch unit is arranged between the first end of the first battery pack and the first end of the second battery pack.

8 . The charge-and-discharge circuit according to claim 7 , further comprising:

at least one external inductance unit arranged between the M-phase motor and the charge-and-discharge loop switch bridge arm.

9 . The charge-and-discharge circuit according to claim 8 , wherein the junction point between the upper bridge arm and the lower bridge arm of the charge-and-discharge loop switch bridge arm is connected to the M-phase motor comprises that:

the junction point between the upper bridge arm and the lower bridge arm of the charge-and-discharge loop switch bridge arm is connected to one end of the at least one external inductance unit, and the other end of the at least one external inductance unit is connected to a common junction point of the M phases of windings of the M-phase motor.

10 . The charge-and-discharge circuit according to claim 7 , wherein the M-phase motor is a dual-motor comprising a first M-phase motor and a second M-phase motor; and wherein a common junction point of M phases of windings of the first M-phase motor is connected to a common junction point of M phases of windings of the second M-phase motor.

11 . The charge-and-discharge circuit according to claim 10 , wherein the junction points between the upper bridge arms and the lower bridge arms of the M-phase bridge arm are respectively connected to the M phases of windings of the M-phase motor in a one-to-one correspondence manner comprises that:

the junction points between the upper bridge arms and the lower bridge arms of the M-phase bridge arm are respectively connected to the M phases of windings of the first M-phase motor in a one-to-one correspondence manner.

12 . The charge-and-discharge circuit according to claim 10 , wherein the junction point between the upper bridge arm and the lower bridge arm of the charge-and-discharge loop switch bridge arm is connected to the M-phase motor comprises that:

junction points between upper bridge arms and lower bridge arms of the charge-and-discharge loop switch bridge arm are respectively connected to the M phases of windings of the second M-phase motor in a one-to-one correspondence manner.

13 . A charge-and-discharge system, comprising:

a control module; and

the charge-and-discharge circuit according to claim 1 ,

wherein the control module is configured to send an instruction to the charge-and-discharge circuit to control the power supply module to be charged or discharged.

14 . A charge-and-discharge system, comprising:

a control module; and

the charge-and-discharge circuit according to claim 7 ,

wherein the control module is configured to send an instruction to the charge-and-discharge circuit to control the power supply module to be charged or discharged.

15 . A charge-and-discharge control method, applied to the power consumption system according to claim 13 , the method comprising:

in response to an enable signal sent by the control module, switching on the upper bridge arms or the lower bridge arms of the M-phase bridge arm, and switching on the upper bridge arm or the lower bridge arm of the charge-and-discharge switch bridge arm, so as to form a charge loop or a discharge loop; and

repeatedly switching between the charge loop and the discharge loop to charge and discharge the power supply module.

16 . A charge-and-discharge control method, applied to the power consumption system according to claim 14 , the method comprising:

in response to an enable signal sent by the control module, switching on the upper bridge arms or the lower bridge arms of the M-phase bridge arm, and switching on the upper bridge arm or the lower bridge arm of the charge-and-discharge switch bridge arm, so as to form a charge loop or a discharge loop; and

charging or discharging the first battery pack or the second battery pack through the charge loop or the discharge loop, and the charging and discharging comprises switching a charge-and-discharge state of the first battery pack and the second battery pack;

wherein the switching the charge-and-discharge state comprises charging the first battery pack and discharging the second battery pack, or discharging the first battery pack and charging the second battery pack.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2024
From: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
To: CONTEMPORARY AMPEREX TECHNOLOGY (HONG KONG) LIMITED
Reel/Frame 068338/0402 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2024
From: HUANG, XIAOJIAN; FU, CHENGHUA; DAN, ZHIMIN
To: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Reel/Frame 066132/0058 →