IP Library › Granted Patent US 9,153,846
Granted Patent B2
US 9,153,846 · App. 13/532,787 · Granted Oct 6, 2015

Battery pack and method of controlling charge-and-discharge of battery pack by its thermoelectric property

Inventors: Shih-Hao Liang (New Taipei, TW); Yu-Min Peng (Hsinchu, TW); Shou-Hung Ling (Taipei, TW); Chung-Jen Chou (Yunlin County, TW); Chein-Chung Sun (Kaohsiung, TW); Chun-Ho Tai (Hsinchu, TW)
Assignee: Industrial Technology Research Institute
H01M10/443H01M10/617H02J7/0016H02J7/0091H01M10/651H02J2007/0067
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Quick Facts
Patent No.
US 9,153,846
App. No.
13/532,787
Granted
Oct 6, 2015
Kind
B2
Abstract

A battery pack and a method for controlling charge-and-discharge of the battery pack by its thermoelectric property are provided, in which the battery pack has a plurality of thermal regions divided by different ranges of temperature. The battery pack includes a plurality of parallel-connected battery groups and a plurality of variable resistances. The parallel-connected battery groups are located in the thermal regions respectively, and each of the parallel-connected battery groups includes batteries connected in parallel. The variable resistances are disposed between two parallel-connected battery groups.

Claims (21)

1. A battery pack, having a plurality of thermal regions divided by different ranges of temperature, comprising:

a plurality of parallel-connected battery groups, respectively located in the thermal regions, wherein each of the parallel-connected battery groups is formed by a plurality of batteries connected in parallel;

a plurality of variable resistances, each disposed between two parallel-connected battery groups, and

a plurality of current control devices respectively connected to the parallel-connected battery groups to control a discharge sequence of the parallel-connected battery groups,

wherein when an ambient temperature is lower than a set temperature, the parallel-connected battery group in a high-temperature location of the thermal regions is controlled to discharge earlier than the parallel-connected battery group in a low-temperature location, and

wherein a battery temperature in each of the thermal regions depends on a position, a heat-dissipation condition and a waste heat transfer path of each parallel-connected battery group.

2. The battery pack according to claim 1 , wherein the thermal regions are set according to the ambient temperature and a heat-dissipation condition of the battery pack.

3. The battery pack according to claim 1 , wherein an overall temperature difference in all of the thermal regions is within 20° C.

4. The battery pack according to claim 1 , wherein a temperature difference in each of the thermal regions is within 5° C.

5. A method for controlling a battery pack, comprising:

providing a battery pack having a plurality of thermal regions divided by different ranges of temperature, wherein the battery pack comprises a plurality of parallel-connected battery groups and a plurality of variable resistances, each of the parallel-connected battery groups is located in each of the thermal regions, and each variable resistance is disposed between two parallel-connected battery groups; and

controlling a discharge sequence of the parallel-connected battery groups according to an ambient temperature,

wherein the step of controlling the discharge sequence of the parallel-connected battery groups comprises using a plurality of current control devices to respectively control the parallel-connected battery groups,

wherein a method for controlling the discharge sequence of the parallel-connected battery groups comprises: discharging the parallel-connected battery group in a high-temperature location of the thermal regions earlier than the parallel-connected battery group in a low-temperature location when the ambient temperature is lower than a set temperature, and

wherein a battery temperature in each of the thermal regions depends on a position, a heat-dissipation condition and a waste heat transfer path of each parallel-connected battery group.

6. The method for controlling a battery pack according to claim 5 , wherein a method for controlling the discharge sequence of the parallel-connected battery groups further comprises: discharging the parallel-connected battery group in the low-temperature location in the thermal regions earlier than the parallel-connected battery group in the high-temperature location when the ambient temperature is higher than the set temperature.

7. The method for controlling a battery pack according to claim 5 , further comprising: controlling the discharge according to a temperature rising slope of each parallel-connected battery group.

8. The method for controlling a battery pack according to claim 5 , further comprising: controlling a current value of each parallel-connected battery group according to a residual battery capacity.

9. The method for controlling a battery pack according to claim 5 , wherein the thermal regions are set according to the ambient temperature and a heat-dissipation condition of the battery pack.

10. The method for controlling a battery pack according to claim 5 , wherein an overall temperature difference in all of the thermal regions is within 20° C.

11. The method for controlling a battery pack according to claim 5 , wherein a temperature difference in each of the thermal regions is within 5° C.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNOR'S EXECUTION DATE PREVIOUSLY RECORDED ON REEL 048673 FRAME 0377. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 5, 2019
From: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
To: KWANG YANG MOTOR CO., LTD.
Reel/Frame 050305/0489 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2019
From: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
To: KWANG YANG MOTOR CO., LTD.
Reel/Frame 048673/0377 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2012
From: LIANG, SHIH-HAO; PENG, YU-MIN; LING, SHOU-HUNG; CHOU, CHUNG-JEN; SUN, CHEIN-CHUNG; TAI, CHUN-HO
To: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
Reel/Frame 028456/0082 →
Priority Claims (1)
TW 100142012 A · Nov 17, 2011 · national
Continuity (1)
Related Publication 20130127423A1 · May 23, 2013