IP Library Granted Patent US 11,292,355
Granted Patent B2
US 11,292,355 · App. 16/701,274 · Granted Apr 5, 2022

Battery charging method and system for on-board charger

Inventor: Dong-Hui Lim (Yongin-si, KR)
Assignee: HYUNDAI AUTOEVER CORP.
B60L53/32B60L53/11B60L2210/30B60L2240/547
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Quick Facts
Patent No.
US 11,292,355
App. No.
16/701,274
Granted
Apr 5, 2022
Kind
B2
Abstract

A battery charging method for an on-board charger (OBC) includes: applying, by a controller, an output voltage of a first converter to a second converter by controlling the output voltage based on a result of a comparison between a battery load voltage and a battery rated voltage; controlling, by the controller, the second converter to perform a frequency modulation on the output voltage using a low-speed frequency modulation method or a high-speed frequency modulation method based on a result of the control of the output voltage; and generating, by the controller, a frequency harmonic of a system frequency in a battery current based on a modulation method used to perform the frequency modulation. An output voltage of the first converter is controlled based on a load voltage state of a battery and applied to the second converter.

Claims (40)

1. A battery charging method for an on-board charger (OBC), the battery charging method comprising:

applying, by a battery controller, an output voltage of a first converter to a second converter by changing the output voltage of the first converter based on a result of a comparison between a battery load voltage and a battery rated voltage;

controlling, by the battery controller, the second converter to perform a frequency modulation on the output voltage of the first converter using a low-speed frequency modulation method or a high-speed frequency modulation method based on the changed output voltage of the first converter; and

generating, by the battery controller, a frequency harmonic of a system frequency in a battery current based on a modulation method, among the low-speed frequency modulation method or the high-speed frequency modulation method, used to perform the frequency modulation.

2. The battery charging method of claim 1 , wherein applying the output voltage of the first converter to the second converter comprises:

changing the output voltage of the first converter into a first voltage and applying the changed output voltage of the first converter to the second converter when the battery load voltage is less than the battery rated voltage; and

changing the output voltage of the first converter into a second voltage and applying the changed output voltage of the first converter to the second converter when the battery load voltage is equal to or greater than the battery rated voltage.

3. The battery charging method of claim 2 , wherein changing the output voltage of the first converter into the first voltage comprises:

determining the first voltage of the first converter based on a specific ratio of the battery rated voltage and rated efficiency of the second converter; and

changing the output voltage of the first converter into the first voltage.

4. The battery charging method of claim 2 , wherein changing the output voltage of the first converter into the second voltage comprises:

determining the second voltage using a correction value determined based on a sensed value of the output voltage of the first converter, an input/output voltage and current, and a battery charging system; and

changing the output voltage of the first converter into the second voltage.

5. The battery charging method of claim 2 , wherein controlling the second converter to perform the frequency modulation on the output voltage comprises:

when the output voltage of the first converter is changed into the first voltage, controlling the second converter to perform the frequency modulation using the low-speed frequency modulation method so that an output voltage of the second converter is controlled; and

when the output voltage of the first converter is changed into the second voltage, controlling the second converter to perform the frequency modulation using the high-speed frequency modulation method so that an output voltage of the second converter is controlled.

6. The battery charging method of claim 5 , wherein generating the frequency harmonic of the system frequency in the battery current comprises:

generating the frequency harmonic of the system frequency in the battery current when the frequency modulation is performed on the output voltage of the first converter using the low-speed frequency modulation method.

7. A battery charging system for an on-board charger (OBC), the battery charging system comprising:

a first converter configured to convert a voltage of input power;

a second converter configured to:

receive an output voltage of the first converter as an input voltage, and

convert the input voltage into a voltage for battery charging by performing a switching on/off operation using a low-speed frequency modulation method or a high-speed frequency modulation method; and

a battery controller configured to:

apply the output voltage of the first converter to the second converter by changing the output voltage of the first converter based on a result of a comparison between a battery load voltage and a battery rated voltage,

control the second converter to perform a frequency modulation on the output voltage of the first converter using the low-speed frequency modulation method or the high-speed frequency modulation method based on the changed output voltage of the first converter, and

generate a frequency harmonic of a system frequency in a battery current based on a modulation method, among the low-speed frequency modulation method or the high-speed frequency modulation method, used to perform the frequency modulation.

8. The battery charging system of claim 7 , wherein the battery controller is configured to:

change the output voltage of the first converter into a first voltage and apply the changed output voltage of the first converter to the second converter when the battery load voltage is less than the battery rated voltage; and

change the output voltage of the first converter into a second voltage and apply the changed output voltage of the first converter to the second converter when the battery load voltage is equal to or greater than the battery rated voltage.

9. The battery charging system of claim 8 , wherein the battery controller is configured to:

determine the first voltage of the first converter based on a specific ratio of the battery rated voltage and rated efficiency of the second converter; and

change the output voltage of the first converter into the first voltage and apply the changed output voltage of the first converter to the second converter.

10. The battery charging system of claim 8 , wherein the battery controller is configured to:

determine the second voltage using a correction value determined based on a sensed value of the output voltage of the first converter, an input/output voltage and current, and a battery charging system; and

change the output voltage of the first converter into the second voltage and apply the changed output voltage of the first converter to the second converter.

11. The battery charging system of claim 8 , wherein the battery controller is configured to:

control the second converter to perform the frequency modulation using the low-speed frequency modulation method so that an output voltage of the second converter is controlled, if the output voltage of the first converter is changed into the first voltage; and

control the second converter to perform the frequency modulation using the high-speed frequency modulation method so that an output voltage of the second converter is controlled, if the output voltage of the first converter is changed into the second voltage.

12. The battery charging system of claim 11 , wherein the battery controller is configured to generate the frequency harmonic of the system frequency in the battery current when the frequency modulation is performed on the output voltage of the first converter using the low-speed frequency modulation method.

Assignments (2)
MERGER Recorded Oct 18, 2021
From: HYUNDAI AUTRON CO., LTD.
To: HYUNDAI AUTOEVER CORP.
Reel/Frame 057842/0221 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2019
From: LIM, DONG-HUI
To: HYUNDAI AUTRON CO., LTD
Reel/Frame 051223/0807 →
Priority Claims (1)
KR 10-2018-0156105 · Dec 6, 2018 · national
Continuity (1)
Related Publication 20200180458A1 · Jun 11, 2020