IP Library Patent Application 13951782
Patent Application
App. No. 13/951,782

BATTERY DEGRADATION DETERMINING DEVICE

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Quick Facts
Patent No.
US None
App. No.
13/951,782
Abstract

A battery block 12 includes a parallel or series circuit of battery units. Each battery unit is provided with a battery module including at least one secondary battery. Measured voltage values VDET[1]˜VDET[n] and measured current values IDET[1]˜IDET[n]) from the battery modules 1 [1]˜ 1 [n] inside the battery units BU[1]˜BU[n] are sent to a main control unit 11 . When battery modules 1 [1] and 1 [2] are connected in parallel, the difference between IDET[1] and IDET[2] is equal to or greater than a predetermined value, and IDET[1]>IDET[2], it is determined that the degraded state of battery module 1 [2] has reached a specific state. When the difference between IDET[1] and IDET[2] is equal to or greater than the predetermined value, and IDET[1]<IDET[2], it is determined that the degraded state of battery module 1 [1] has reached a specific state.

Claims (12)

1 . A battery degradation determining device for a plurality of battery modules each having one or more secondary batteries, the battery degradation determining device characterized in that:

the plurality of battery modules are connected in parallel to each other; and the battery degradation determining device determines whether or not each battery module has degraded by comparing the charge or discharge current values of the plurality of battery modules.

2 . The battery degradation determining device of claim 1 , wherein the plurality of battery modules includes a first and second battery module, and the battery degradation determining device determines whether the first and second battery modules have degraded by comparing a first current value to a second current value, the first current value being the charge or discharge current value of the first battery module, and the second current value being the charge or discharge current value of the second battery module.

3 . The battery degradation determining device of claim 2 , wherein the battery degradation determining device determines that the second battery module has degraded when the difference between the first and second current values is greater than a predetermined value and the second current value is smaller than the first current value.

4 . The battery degradation determining device of claim 1 , wherein the plurality of battery modules includes a 1st through mth battery module (where m is an integer equal to or greater than 3), and the battery degradation determining device determines whether or not each battery module has degraded by extracting the highest current value and the other (m−1) non-highest current values from the 1st through mth current values, the current values being the charge or discharge current values of the 1st through mth battery modules, and by comparing the highest current value to each non-highest current value.

5 . The battery degradation determining device of claim 1 , wherein the plurality of battery modules includes a 1st through mth battery module (where m is an integer equal to or greater than 3), and the battery degradation determining device determines whether or not each battery module has degraded by classifying one or more current values of the 1st through mth current values within a predetermined first range in a first group, by classifying one or more current values within a predetermined second range in a second group, the current values being the charge or discharge current values of the 1st through mth battery modules, by eliminating any overlap between the first and second ranges, and by comparing statistics based on the current values belonging to the first group to statistics based on the current values belonging to the second group.

6 . A battery degradation determining device for a plurality of battery modules each having one or more secondary batteries, the battery degradation determining device characterized in that:

the plurality of battery modules are connected in series to each other; and the battery degradation determining device determines whether or not each battery module has degraded by comparing the rate of change in the output voltage of the plurality of battery modules when the battery modules are charged or discharged.

7 . The battery degradation determining device of claim 6 , wherein the plurality of battery modules includes a first and second battery module, and the battery degradation determining device determines whether the first and second battery modules have degraded by comparing a first rate-of-change value to a second rate-of-change value, the first rate-of-change value being the rate of change in the output voltage of the first battery module, and the second rate-of-change value being the rate of change in the output voltage of the second battery module.

8 . The battery degradation determining device of claim 7 , wherein the battery degradation determining device determines that the second battery module has degraded when the difference between the first and second rate-of-change values is greater than a predetermined value and the second rate-of-change value is smaller than the first rate-of-change value.

9 . The battery degradation determining device of claim 6 , wherein the plurality of battery modules includes a 1st through mth battery module (where m is an integer equal to or greater than 3), and the battery degradation determining device determines whether or not each battery module has degraded by extracting the lowest rate-of-change value and the other (m−1) non-lowest rate-of-change values from the 1st through mth rate-of-change values, the rate-of-change values being the rate-of-change values for the output voltage of the 1st through mth battery modules, and by comparing the lowest rate-of-change value to each non-lowest rate-of-change value.

10 . The battery degradation determining device of claim 6 , wherein the plurality of battery modules includes a 1st through mth battery module (where m is an integer equal to or greater than 3), and the battery degradation determining device determines whether or not each battery module has degraded by classifying one or more rate-of-change values of the 1st through mth rate-of-change values within a predetermined first range in a first group, by classifying one or more rate-of-change values within a predetermined second range in a second group, the rate-of-change values being the rate-of-change values for the output voltage of the 1st through mth battery modules, by eliminating any overlap between the first and second ranges, and by comparing statistics based on the rate-of-change values belonging to the first group to statistics based on the rate-of-change values belonging to the second group.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2015
From: SANYO ELECTRIC CO., LTD.
To: PANASONIC CORPORATION
Reel/Frame 035071/0276 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2015
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 035071/0508 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2013
From: NAKASHIMA, TAKESHI; SUGIGAKI, CHIE; OKUDA, YASUO
To: SANYO ELECTRIC CO., LTD.
Reel/Frame 030883/0651 →