IP Library Granted Patent US 12,466,283
Granted Patent B2
US 12,466,283 · App. 17/983,651 · Granted Nov 11, 2025

Current regulation overcharge protection for vehicle battery systems

Inventors: Zhentao Xie (Auburn Hills, MI); Moustapha Diab (Royal Oak, MI); Rudolf Kharpuri (Auburn Hills, MI)
Assignee: FCA US LLC
B60L53/62B60L53/66B60L2210/10B60Y2200/91B60Y2200/92H02J3/322H02J7/00304H02M3/00H02M3/1582H02M3/1584
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Quick Facts
Patent No.
US 12,466,283
App. No.
17/983,651
Granted
Nov 11, 2025
Kind
B2
Abstract

Electrified vehicle battery overcharge protection techniques monitor an intelligent battery sensor (IBS) current signal via a controller area network communication (CAN-C) bus and an output current of an auxiliary power module (APM) when the IBS current signal is unavailable. A controller then intelligently adjusts charging of the battery system to be battery current-based, battery temperature-based, or at predetermined constant value, based on a determined validity of the IBS current signal, the measured battery system current, and an awake/asleep status and responsiveness of the CAN-C bus.

Claims (31)

1 . An overcharge protection system for a battery system of an electrified vehicle, the overcharge protection system comprising:

an intelligent battery sensor (IBS) configured to generate an IBS current signal indicative of a measured current at the battery system;

a controller in communication with the IBS via a controller area network communication (CAN-C) bus and configured to:

determine whether the IBS current signal is available based on an awake/asleep status of the CAN-C bus;

when the IBS current signal is unavailable because the CAN-C bus status is asleep, monitor an output current of an auxiliary power module (APM) configured to control a direct current (DC)-to-DC (DC-DC) converter;

based on a comparison of the monitored APM output current and a first predefined maximum current threshold, selectively request the CAN-C bus to transition to the awake status and obtain the IBS current signal from the IBS;

determine whether the IBS current signal is valid based on a comparison of the IBS current signal to a set of expected values; and

based on the determined validity of the IBS current signal, the measured battery system current, and the CAN-C bus status, adjust a charging voltage set point for the APM for the battery system to be battery current-based, battery temperature-based, or a predetermined constant value.

2 . The overcharge protection system of claim 1 , wherein when the IBS current signal is invalid and the request to transition the CAN-C bus to the awake status was generated, the controller is configured to adjust the charging voltage set point to the predetermined constant value.

3 . The overcharge protection system of claim 1 , wherein when the IBS current signal is invalid and the request to transition the CAN-C bus to the awake status was not generated, the controller is configured to perform battery temperature-based adjusting of the charging voltage set point.

4 . The overcharge protection system of claim 3 , wherein the controller is further configured to cancel the request to transition the CAN-C bus to the awake status for energy saving purposes.

5 . The overcharge protection system of claim 1 , wherein when the IBS current signal is valid and its value is higher than a second predefined maximum threshold, the controller is configured to perform battery current-based adjusting of the charging voltage set point to ensure the charging current does not exceed the second predefined maximum threshold until at least a next key cycle.

6 . The overcharge protection system of claim 1 , wherein when the IBS current signal is valid and its value is lower than the predefined maximum threshold, the controller is configured to perform temperature-based adjusting of the charging voltage set point.

7 . The overcharge protection system of claim 6 , wherein the controller is further configured to cancel the request to transition the CAN-C bus to the awake status for energy saving purposes.

8 . The overcharge protection system of claim 1 , wherein the controller is further configured to perform the battery current-based control of the charging voltage set point for the APM for the battery system using a gain adjustable integrator with an integral anti-windup.

9 . The overcharge protection system of claim 1 , wherein the gain adjustable integrator with the integral anti-windup comprises (i) applying a low-pass filter to the IBS current signal to remove high-frequency noise and (ii) applying a rate limiter to and constraining the charging voltage set point to avoid steady-state error in step input tracking.

10 . An overcharge protection method for a battery system of an electrified vehicle, the overcharge protection method comprising:

receiving, by a controller and from an intelligent battery sensor (IBS) via a controller area network communication (CAN-C) bus, an IBS current signal indicative of a measured current at the battery system;

determining, by the controller, whether the IBS current signal is available based on an awake/asleep status of the CAN-C bus;

monitoring, by the controller, an output current of an auxiliary power module (APM) when the IBS current signal is unavailable because the CAN-C bus status is asleep, wherein the APM is configured to control a direct current (DC)-to-DC (DC-DC) converter;

selectively requesting, by the controller, the CAN-C bus to transition to the awake status based on a comparison of the monitored APM output current and a first predefined maximum current threshold and thereby obtain the IBS current signal from the IBS;

determining, by the controller, whether the IBS current signal is valid based on a comparison of the IBS current signal to a set of expected values; and

adjusting, by the controller, a charging voltage set point for the APM for the battery system to be battery current-based, battery temperature-based, or a predetermined constant value, based on the determined validity of the IBS current signal, the measured battery system current, and the CAN-C bus status.

11 . The overcharge protection method of claim 10 , further comprising adjusting, by the controller, the charging voltage set point to the predetermined constant value when the IBS current signal is invalid and the request to transition the CAN-C bus to the awake status was generated.

12 . The overcharge protection method of claim 10 , further comprising performing, by the controller, battery temperature-based adjusting of the charging voltage set point when the IBS current signal is invalid and the request to transition the CAN-C bus to the awake status was not generated.

13 . The overcharge protection method of claim 12 , further comprising canceling, by the controller, the request to transition the CAN-C bus to the awake status for energy saving purposes.

14 . The overcharge protection method of claim 10 , performing, by the controller, battery current-based adjusting of the charging voltage set point when the IBS current signal is valid and its value is higher than a second predefined maximum threshold to thereby ensure the charging current does not exceed the second predefined maximum threshold until at least a next key cycle.

15 . The overcharge protection method of claim 10 , further comprising performing, by the controller, temperature-based adjusting of the charging voltage set point when the IBS current signal is valid and its value is lower than the predefined maximum threshold.

16 . The overcharge protection method of claim 15 , further comprising canceling, by the controller, the request to transition the CAN-C bus to the awake status for energy saving purposes.

17 . The overcharge protection method of claim 10 , further comprising performing, by the controller, the battery current-based control of the charging voltage set point for the APM for the battery system using a gain adjustable integrator with an integral anti-windup.

18 . The overcharge protection method of claim 10 , wherein the gain adjustable integrator with the integral anti-windup comprises (i) applying a low-pass filter to the IBS current signal to remove high-frequency noise and (ii) applying a rate limiter to and constraining the charging voltage set point to avoid steady-state error in step input tracking.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2025
From: XIE, ZHENTAO; DIAB, MOUSTAPHA; KHARPURI, RUDOLF
To: FCA US LLC
Reel/Frame 072419/0079 →
Continuity (2)
Provisional Application 63279201 · Nov 15, 2021
Related Publication 20230150386A1 · May 18, 2023
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