IP Library Granted Patent US 11,712,968
Granted Patent B2
US 11,712,968 · App. 16/719,423 · Granted Aug 1, 2023

Method for detecting damage to battery pack enclosure during a crash event

Inventor: Parth Sanjiv Gyani (San Jose, CA)
Assignee: NIO Technology (Anhui) Co., Ltd.
B60L3/0046B60L50/64H01M10/4257B60L2250/10
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Quick Facts
Patent No.
US 11,712,968
App. No.
16/719,423
Granted
Aug 1, 2023
Kind
B2
Abstract

A battery pack enclosure, a battery module, and a method are provided to detect damage to in a crash event. The battery pack enclosure may include a plurality of battery modules, wherein each battery modules includes a plurality of adjacent battery cells. The battery pack enclosure may also include a sensor and an electronic control unit electronically connected to the sensor, the electronic control unit configured to monitor the sensor to detect damage to the battery pack enclosure. The sensor may comprise a mesh of resistive wires, and the electronic control unit monitors the overall resistance of the mesh resistive wires. The overall resistance of the mesh resistive wires can be used to determine whether there is damage to the battery pack enclosure. If damage is detected, the damage can further be located, and an alert sent.

Claims (46)

1. A battery pack enclosure for a vehicle, comprising:

a plurality of battery modules, wherein each battery module includes a plurality of adjacent battery cells;

a sensor comprising a mesh of resistive wires,

wherein the sensor is provided between the plurality of adjacent battery cells and a bottom cover of the battery pack enclosure; and

an electronic control unit electronically connected to the sensor, the electronic control unit configured to detect damage to the battery pack enclosure,

wherein the electronic control unit monitors an overall resistance of the mesh of resistive wires, and

wherein a change in the overall resistance of the mesh of resistive wires indicates damage to the battery pack enclosure.

2. The battery pack enclosure of claim 1 , wherein the sensor is disposed below the battery pack enclosure.

3. The battery pack enclosure of claim 1 , wherein the electronic control unit is further configured to detect the damage to the battery pack enclosure when the change in the overall resistance of the mesh of resistive wires exceeds a predetermined threshold for a predetermined time period.

4. The battery pack enclosure of claim 1 , wherein the electronic control unit is further configured to:

detect the damage to the battery pack enclosure; and

in response to detecting the damage to the battery pack enclosure:

determine a location of the damage to the battery pack enclosure; and

send an alert that indicates the location of the damage to the battery pack enclosure.

5. The battery pack enclosure of claim 4 , wherein the electronic control unit is further configured to:

in response to detecting the damage to the battery pack enclosure and determining the location of the damage to the battery pack enclosure, disable at least one of the plurality of battery modules based on the location of the damage to the battery pack enclosure.

6. The battery pack enclosure of claim 2 , wherein the mesh of resistive wires is formed of copper wires.

7. The battery pack enclosure of claim 1 , wherein the mesh of resistive wires is printed on insulation of the bottom cover of the battery pack enclosure.

8. The battery pack enclosure of claim 1 , wherein the electronic control unit comprises a battery management system of the vehicle, wherein the sensor comprises a plurality of sensors, each sensor comprising a corresponding mesh of resistance wires, wherein each sensor has a unique identifier and is associated spatially with a corresponding portion of a respective battery module, and wherein the electronic control unit identifies a location of the damage to the respective battery module by identifying the sensor detecting the change in the overall resistance of the corresponding mesh of resistance wires.

9. A battery module for a vehicle, comprising:

a plurality of adjacent battery cells;

a sensor comprising a mesh of resistive wires,

wherein the sensor is provided between the plurality of adjacent battery cells and a bottom cover of the battery module; and

an electronic control unit electronically connected to the sensor, the electronic control unit configured to detect damage to the battery module, wherein the electronic control unit monitors an overall resistance of the mesh of resistive wires, and wherein a change in the overall resistance of the mesh of resistive wires indicates damage to the battery module.

10. The battery module of claim 9 , wherein the sensor is disposed below the battery module.

11. The battery module of claim 9 , wherein the electronic control unit is configured to detect the damage to the battery module when the change in the overall resistance of the mesh of resistive wires exceeds a predetermined threshold for a predetermined time period.

12. The battery module of claim 9 , wherein the electronic control unit is further configured to:

detect the damage to the battery module; and

in response to detecting the damage to the battery module:

determine a location of the battery module; and

send an alert that indicates the location of the damaged battery module.

13. The battery modules of claim 12 , wherein the electronic control unit is further configured to:

in response to determining the location of the damaged battery module,

disabling the damaged battery module.

14. The battery module of claim 10 , wherein the mesh of resistive wires is formed of copper wires.

15. The battery module of claim 9 , wherein the electronic control unit comprises a battery management system of the vehicle, wherein the sensor comprises a plurality of sensors, each sensor comprising a corresponding mesh of resistance wires, wherein each sensor has a unique identifier and is associated spatially with a corresponding portion of a respective battery module, and wherein the electronic control unit identifies a location of the damage to the respective battery module by identifying the sensor detecting the change in the overall resistance of the corresponding mesh of resistance wires.

16. A method of detecting damage to a battery enclosure for a vehicle, the method comprising:

monitoring a sensor, wherein the sensor comprises a mesh of resistive wires, wherein the battery enclosure comprises a plurality of battery modules, wherein each battery module of the plurality of battery modules includes a plurality of adjacent battery cells, and wherein the sensor is provided between the plurality of adjacent battery cells and a bottom cover of the battery enclosure; and

detecting damage to the battery enclosure by monitoring an overall resistance of the mesh of resistive wires, wherein a change in the overall resistance of the mesh of resistive wires indicates damage to the battery enclosure.

17. The method of claim 16 , wherein the sensor is disposed below the battery enclosure.

18. The method of claim 16 , wherein detecting the damage to the battery enclosure comprises detecting the change in the overall resistance of the mesh of resistive wires exceeds a predetermined threshold for a predetermined time period.

19. The method of claim 18 , further comprising:

determining a location of the damage to the battery enclosure; and

sending an alert that indicates the location of the damage to the battery enclosure.

20. The method of claim 19 , further comprising:

in response to detecting the damage to the battery enclosure and determining the location of the damage to the battery enclosure, disabling at least one of the plurality of battery modules based on the location of the damage to the battery enclosure.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2022
From: NIO USA, INC.
To: NIO TECHNOLOGY (ANHUI) CO., LTD.
Reel/Frame 060171/0724 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2020
From: GYANI, PARTH SANJIV
To: NIO USA, INC.
Reel/Frame 051508/0733 →
Continuity (1)
Related Publication 20210188093A1 · Jun 24, 2021