IP Library › Granted Patent US 11,054,476
Granted Patent B2
US 11,054,476 · App. 16/437,333 · Granted Jul 6, 2021

Method for monitoring a status of a battery, monitoring device and motor vehicle

Inventor: Christoph Gass (Gaimersheim, DE)
Assignee: AUDI AG
G01R31/3842B60L58/12
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Quick Facts
Patent No.
US 11,054,476
App. No.
16/437,333
Granted
Jul 6, 2021
Kind
B2
Abstract

A method for monitoring a status of a battery, wherein a battery current (I) is detected during a measurement cycle and the amount of charge (ΔQ) supplied to the battery and/or removed from the battery is determined as a function of the detected battery current (I). Furthermore, an estimated value (CS, CS 0 , CS 1 , CS 2 , CSn) for a capacity (C) of the battery before a certain relaxation time of the battery has elapsed, during which the battery is in the unloaded state after a load phase during which power is supplied to the battery and/or power is removed from the battery, is determined as a function of the determined amount of charge (ΔQ) and, as a function of the estimated value (CS, CS 0 , CS 1 , CS 2 , CSn), it is determined for the capacity (C) whether the capacity (C) of the battery is above a specifiable limit value (G).

Claims (11)

1. A method for monitoring a status of a battery, comprising: detecting, during a measuring cycle, a battery current (I) and the amount of charge (AQ) which was supplied to the battery and/or removed from the battery during the measuring cycle is determined as a function of the detected battery current (I), and at least one parameter of the battery is determined as a function of the determined amount of charge (AQ), wherein an estimated value for a capacity (C) of the battery before a certain relaxation time of the battery has elapsed, during which the battery is in the unloaded state after a load phase during which power is supplied to the battery and/or power is removed from the battery, is determined as one of the at least one parameters, and as a function of the estimated value (CS) for the capacity (C) it is determined whether the capacity (C) of the battery is above a specifiable limit value (G) wherein the estimated value (CS) is determined as a ratio of the determined amount of charge (AQ) to an absolute value of a change in a state of charge of the battery, and wherein as a function of a total charge throughout during the measurement cycle, a maximum measurement error (F) is found for the determined amount of charge (AQ), wherein the maximum measurement error (F) is taken into account when determining the estimated value (CS), in particular wherein the estimated value (CS) represents the determined amount of charge (AQ) less the maximum measurement error (F).

2. The method according to claim 1 , wherein the amount of charge (AQ) supplied to the battery and/or removed from the battery during the measurement cycle represents the estimated value (CS) for the capacity (C).

3. The method according to claim 1 , wherein the amount of charge (AQ) supplied to the battery and/or removed from the battery during the measurement cycle is determined by means of a temporal integration of the battery current (I).

4. The method according to claim 1 , wherein for determining the state of charge change, an initial state of charge (SOC 1 ) of the battery at the beginning of the measurement cycle is determined as a function of a voltage measurement of the battery voltage (U 1 ) while the battery is in the unloaded state.

5. The method according to claim 1 , wherein for determining the state of charge change, a final state of charge (SOC 2 ) at the end of the measurement cycle is determined as a function of the detected battery current (I) and as a function of a capacity value of the battery which was determined in a preceding measurement cycle.

6. The method according to claim 1 , wherein at the end of the measurement cycle a plurality of second battery voltages (Un) are determined in temporal succession, while the battery is in the unloaded state, wherein, as a function of the second battery voltages (Un), respective second discharge state values (SOCn) are determined, as a function of which respective capacity values (CSn) are determined, and wherein in the event that the capacity values (CSn) increase over time and the temporally first capacity value (CSn) is greater than the specifiable limit value (G), it is determined that the capacity (C) of the battery is above the limit value (G); in the event that the capacity values (CSn) decrease over time and the temporally first capacity value (CSn) is smaller than the specifiable limit value (G), it is determined that the capacity (C) of the battery is below the limit value (G); in the event that the capacity values (CSn) increase over time and the temporally first capacity value (CSn) is smaller than the specifiable limit value (G), or in the event that the capacity values (CSn) decrease over time and the temporally first capacity value is greater than the specifiable limit value (G), the capacity values (CSn) are extrapolated over time, and the estimated value (CS) is determined as a function of the extrapolation.

7. A monitoring device for monitoring a status of a battery, wherein the monitoring device is designed to detect a battery current (I) during a measurement cycle and, as a function of the detected battery current (I), to determine the amount of charge (AQ) supplied to the battery and/or removed from the battery during the measurement cycle, and, as a function of the determined amount of charge (AQ), to determine at least one parameter of the battery, wherein the monitoring device is configured in such a way that the monitoring device determines an estimated value (CS) for a capacity (C) of the battery before a certain relaxation time of the battery has elapsed, during which the battery is in the unloaded state after a load phase during which power is supplied to the battery and/or power is removed from the battery, as a parameter, and, as a function of the estimated value (CS), determines for the capacity (C) whether the capacity (C) of the battery is above a specifiable limit value (G), wherein the estimated value (CS) is determined as a ratio of the determined amount of charge (AQ) to an absolute value of a change in a state of charge of the battery, wherein as a function of a total charge throughput during the measurement cycle, a maximum measurement error (F) is found for the determined amount of charge (AQ), wherein the maximum measurement error (F) is taken into account when determining the estimated value (CS), in particular wherein the estimated value (CS) represents the determined amount of charge (AQ) less the maximum measurement error (F).

8. The method according to claim 2 , wherein the amount of charge (AQ) supplied to the battery and/or removed from the battery during the measurement cycle is determined by means of a temporal integration of the battery current (I).

9. The method according to claim 4 , wherein for determining the state of charge change, a final state of charge (SOC 2 ) at the end of the measurement cycle is determined as a function of the detected battery current (I) and as a function of a capacity value of the battery which was determined in a preceding measurement cycle.

10. The method according to claim 3 , wherein at the end of the measurement cycle a plurality of second battery voltages (Un) are determined in temporal succession, while the battery is in the unloaded state, wherein, as a function of the second battery voltages (Un), respective second discharge state values (SOCn) are determined, as a function of which respective capacity values (CSn) are determined, and wherein in the event that the capacity values (CSn) increase over time and the temporally first capacity value (CSn) is greater than the specifiable limit value (G), it is determined that the capacity (C) of the battery is above the limit value (G); in the event that the capacity values (CSn) decrease over time and the temporally first capacity value (CSn) is smaller than the specifiable limit value (G), it is determined that the capacity (C) of the battery is below the limit value (G); in the event that the capacity values (CSn) increase over time and the temporally first capacity value (CSn) is smaller than the specifiable limit value (G), or in the event that the capacity values (CSn) decrease over time and the temporally first capacity value is greater than the specifiable limit value (G), the capacity values (CSn) are extrapolated over time, and the estimated value (CS) is determined as a function of the extrapolation.

11. The method according to claim 4 , wherein at the end of the measurement cycle a plurality of second battery voltages (Un) are determined in temporal succession, while the battery is in the unloaded state, wherein, as a function of the second battery voltages (Un), respective second discharge state values (SOCn) are determined, as a function of which respective capacity values (CSn) are determined, and wherein in the event that the capacity values (CSn) increase over time and the temporally first capacity value (CSn) is greater than the specifiable limit value (C), it is determined that the capacity (C) of the battery is above the limit value (G); in the event that the capacity values (CSn) decrease over time and the temporally first capacity value (CSn) is smaller than the specifiable limit value (G), it is determined that the capacity (C) of the battery is below the limit value (G); in the event that the capacity values (CSn) increase over time and the temporally first capacity value (CSn) is smaller than the specifiable limit value (G), or in the event that the capacity values (CSn) decrease over time and the temporally first capacity value is greater than the specifiable limit value (G), the capacity values (CSn) are extrapolated over time, and the estimated value (CS) is determined as a function of the extrapolation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2019
From: GASS, CHRISTOPH
To: AUDI AG
Reel/Frame 049487/0869 →
Priority Claims (1)
DE 10-2018-212545 · Jul 27, 2018 · national
Continuity (1)
Related Publication 20200033419A1 · Jan 30, 2020
Cited By (2)
US 12,533,990 US 12,664,596