IP Library Granted Patent US 9,969,290
Granted Patent B2
US 9,969,290 · App. 14/369,946 · Granted May 15, 2018

Charging system for electric vehicle and electric vehicle comprising the same

Inventors: Zheqing Tang (Shenzhen, CN); Zhiyong Du (Shenzhen, CN); Fu Tang (Shenzhen, CN)
Assignees: SHENZHEN BYD AUTO R&D COMPANY LIMITED; BYD COMPANY LIMITED
B60L11/1851B60L1/003B60L1/006B60L3/003B60L3/0046B60L3/0069B60L11/18B60L11/1803B60L11/185B60L11/1805B60L11/1809B60L11/1811B60L11/1812B60L11/1814B60L11/1816B60L11/1818B60L11/1838B60L11/1842B60L11/1861B60L11/1872H02J3/32H02J5/00H02J7/007H02J7/0036H02J7/0054H02J7/0055H02J7/0063H02J7/0065H02J7/0068H02J7/02H02J7/345H04B3/542B60L2210/12B60L2210/14B60L2210/30B60L2210/40B60L2210/42B60L2230/12B60L2240/527B60L2240/529B60L2240/545B60L2240/547B60L2240/549B60L2250/12B60L2260/22B60L2260/26B60L2270/147B60L2270/20H02J7/022H02J2007/0067Y02E60/721Y02T10/705Y02T10/7005Y02T10/7044Y02T10/7072Y02T10/7088Y02T10/7225Y02T10/7233Y02T10/7241Y02T10/92Y02T90/121Y02T90/127Y02T90/128Y02T90/14Y02T90/16Y02T90/163Y02T90/168Y02T90/169Y04S10/126Y04S30/12Y04S30/14
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Quick Facts
Patent No.
US 9,969,290
App. No.
14/369,946
Granted
May 15, 2018
Kind
B2
Abstract

A charging system for an electric vehicle and an electric vehicle including the same are provided. The charging system includes: a power battery; a first charging interface and a second charging interface connected with an external power source respectively; a first charging control branch connected between the power battery and the first charging interface, and a second charging control branch connected between the power battery and the second charging interface; and a controller connected with the first charging interface and the second charging interface respectively.

Claims (73)

1. A charging system for an electric vehicle, comprising:

a power battery;

a first charging interface connected with a first external charging device, and a second charging interface connected with a second external charging device, both the first external charging device and the second external charging device being connected with an external power source;

a first charging control branch connected between the power battery and the first charging interface, and a second charging control branch connected between the power battery and the second charging interface; and

a controller connected with the first charging interface and the second charging interface respectively,

wherein during a charge, the controller is configured to:

control the first charging control branch to start to establish a charging path between the power battery and the first charging interface until the first charging control branch enters a half-load operation state in which a charging power of the first charging control branch reaches half-load;

control the second charging control branch to start to establish a charging path between the power battery and the second charging interface until the second charging control branch enters a half-load operation state in which a charging power of the second charging control branch reaches half-load;

after both the first charging control branch and the second charging control branch entered the half-load operation state and stably operate in the half-load state, adjust an operation power of the first charging control branch and an operation power of the second charging control branch so as to make the first charging control branch and the second charging control branch enter a full-load operation state respectively.

2. The charging system according to claim 1 , further comprising:

a high-voltage distribution box connected with the power battery and comprising:

a first pre-charging control module and a first switch connected with the first pre-charging control module in parallel, wherein a first terminal of the first pre-charging control module and a first terminal of the first switch are connected with a first terminal of the power battery respectively, and a second terminal of the first pre-charging control module and a second terminal of the first switch are connected with a second terminal of the first charging control branch and a second terminal of the second charging control branch;

a driving control switch having a first terminal connected with the first terminal of the power battery, and connected with a third terminal of the first charging control branch and a third terminal of the second charging control branch respectively,

wherein the first pre-charging control module, the first switch and the driving control switch are connected with the controller respectively.

3. The charging system according to claim 2 , wherein when the electric vehicle is in a charge-discharge mode, the controller pre-charges the first charging control branch and the second charging control branch via the first pre-charging control module and controls the first pre-charging control module to turn on, and when a bus voltage of the first charging control branch and a bus voltage of the second charging control branch are a predetermined multiple of a voltage of the power battery, the controller controls the first pre-charging control module to turn off and controls the first switch to turn on.

4. A charging system for an electric vehicle, comprising:

a power battery;

a first charging interface connected with a first external charging device, and a second charging interface connected with a second external charging device, both the first external charging device and the second external charging device being connected with an external power source;

a first charging control branch connected between the power battery and the first charging interface, and a second charging control branch connected between the power battery and the second charging interface; and

a controller connected with the first charging interface and the second charging interface respectively,

wherein during a charge, the controller is configured to:

control the first charging control branch to start to establish a charging path between the power battery and the first charging interface until the first charging control branch enters a half-load operation state in which a charging power of the first charging control branch reaches half-load;

control the second charging control branch to start to establish a charging path between the power battery and the second charging interface until the second charging control branch enters a half-load operation state in which a charging power of the second charging control branch reaches half-load;

adjust an operation power of the first charging control branch and an operation power of the second charging control branch so as to make the first charging control branch and the second charging control branch enter a full-load operation state respectively;

wherein the charging system further includes:

a high-voltage distribution box connected with the power battery and comprising:

a first pre-charging control module and a first switch connected with the first pre-charging control module in parallel, wherein a first terminal of the first pre-charging control module and a first terminal of the first switch are connected with a first terminal of the power battery respectively, and a second terminal of the first pre-charging control module and a second terminal of the first switch are connected with a second terminal of the first charging control branch and a second terminal of the second charging control branch;

a driving control switch having a first terminal connected with the first terminal of the power battery, and connected with a third terminal of the first charging control branch and a third terminal of the second charging control branch respectively,

wherein the first pre-charging control module, the first switch and the driving control switch are connected with the controller respectively;

wherein each of the first charging control branch and the second charging control branch comprises:

a bidirectional DC/DC module having a first DC terminal connected with a second terminal of the power battery and a second DC terminal connected with a second terminal of the first switch, wherein the first DC terminal is a common DC terminal for an input to and an output from the bidirectional DC/DC module;

a bidirectional DC/AC module having a first DC terminal connected with a second terminal of the driving control switch and a second DC terminal connected with the second terminal of the power battery;

a charge-discharge control module having a first terminal connected with an AC terminal of the bidirectional DC/AC module, wherein a second terminal of the charge-discharge control module of the first charging control branch is connected with the first charging interface, and a second terminal of the charge-discharge control module of the second charging control branch is connected with the second charging interface.

5. The charging system according to claim 4 , further comprising:

a motor control switch having a first terminal connected with the AC terminal of the bidirectional DC/AC module and a second terminal connected with a motor, and controlled by the controller, wherein when the electric vehicle is in a driving mode, the controller controls the motor control switch to turn on.

6. The charging system according to claim 5 , wherein when a current operation mode of the charging system is the driving mode, the controller controls the driving control switch to turn on to stop the bidirectional DC/DC module, controls the motor control switch to turn on, and controls the charge-discharge control module to turn off.

7. The charging system according to claim 6 , wherein when the current operation mode of the charging system is a charge-discharge mode, the controller controls the driving control switch to turn off to start the bidirectional DC/DC module, controls the motor control switch to turn off, and controls the charge-discharge control module to turn on.

8. The charging system according to claim 4 , wherein the bidirectional DC/DC module comprises:

a first switching transistor and a second switching transistor connected in series, and connected between the first DC terminal and a third DC terminal of the bidirectional DC/DC module, and controlled by the controller, in which a first node is defined between the first switching transistor and the second switching transistor;

a first diode connected with the first switching transistor in inverse-parallel;

a second diode connected with the second switching transistor in inverse-parallel;

a first inductor having a first terminal connected with the first node and a second terminal connected with the first terminal of the power battery; and

a first capacitor having a first terminal connected with the second terminal of the first inductor and a second terminal connected with the second terminal of the power battery.

9. The charging system according to claim 4 , wherein each of the first charging control branch and the second charging control branch further comprises:

a leakage current reducing module connected between the first DC terminal and a third DC terminal of the bidirectional DC/DC module.

10. The charging system according to claim 9 , wherein the leakage current reducing module comprises:

a second capacitor and a third capacitor, in which the second capacitor has a first terminal connected with a first terminal of the third capacitor and a second terminal connected with the third DC terminal of the bidirectional DC/DC module, the third capacitor has a second terminal connected with the first DC terminal of the bidirectional DC/DC module, and a second node is defined between the second capacitor and the third capacitor.

11. The charging system according to claim 10 , wherein each of the first charging control branch and the second charging control branch further comprises:

a filtering module connected between the bidirectional DC/AC module and the charge-discharge control module.

12. The charging system according to claim 11 , wherein each of the first charging control branch and the second charging control branch further comprises:

a filtering control module connected between the second node and the filtering module, and controlled by the controller, in which when the current operation mode of the charging system is the driving mode, the controller controls the filtering control module to turn off.

13. The charging system according to claim 11 , wherein each of the first charging control branch and the second charging control branch further comprises:

a second pre-charging control module connected with the charge-discharge control module in parallel and configured to pre-charge a capacitor in the filtering module.

14. The charging system according to claim 4 , wherein the charge-discharge control module comprises:

a three-phase switch and/or a single-phase switch configured to implement a three-phase charge-discharge or a single-phase charge-discharge.

15. The charging system according to claim 4 , wherein each of the first charging control branch and the second charging control branch further comprises:

a detecting module configured to detect a first phase current, a second phase current and a third phase current at an AC side of the bidirectional DC/AC module;

an adjusting module configured to adjust the first phase current, the second phase current and the third phase current when a sum of the first phase current, the second phase current and the third phase current is not zero.

16. An electric vehicle comprising a charging system, the charging system comprising:

a power battery;

a first charging interface connected with a first external charging device, and a second charging interface connected with a second external charging device, both the first external charging device and the second external charging device being connected with an external power source;

a first charging control branch connected between the power battery and the first charging interface, and a second charging control branch connected between the power battery and the second charging interface; and

a controller connected with the first charging interface and the second charging interface respectively,

wherein during a charge, the controller is configured to:

control the first charging control branch to start to establish a charging path between the power battery and the first charging interface until the first charging control branch enters a half-load operation state in which a charging power of the first charging control branch reaches half-load;

control the second charging control branch to start to establish a charging path between the power battery and the second charging interface until the second charging control branch enters a half-load operation state in which a charging power of the second charging control branch reaches half-load;

after both the first charging control branch and the second charging control branch entered the half-load operation state and stably operate in the half-load state, adjust an operation power of the first charging control branch and an operation power of the second charging control branch so as to make the first charging control branch and the second charging control branch enter a full-load operation state respectively.

17. The electric vehicle according to claim 16 , wherein the charging system further comprises:

a high-voltage distribution box connected with the power battery and comprising:

a first pre-charging control module and a first switch connected with the first pre-charging control module in parallel, wherein a first terminal of the first pre-charging control module and a first terminal of the first switch are connected with a first terminal of the power battery respectively, and a second terminal of the first pre-charging control module and a second terminal of the first switch are connected with a second terminal of the first charging control branch and a second terminal of the second charging control branch;

a driving control switch having a first terminal connected with the first terminal of the power battery, and connected with a third terminal of the first charging control branch and a third terminal of the second charging control branch respectively,

wherein the first pre-charging control module, the first switch and the driving control switch are connected with the controller respectively.

18. The electric vehicle according to claim 17 , wherein when the electric vehicle is in a charge-discharge mode, the controller pre-charges the first charging control branch and the second charging control branch via the first pre-charging control module and controls the first pre-charging control module to turn on, and when a bus voltage of the first charging control branch and a bus voltage of the second charging control branch are a predetermined multiple of a voltage of the power battery, the controller controls the first pre-charging control module to turn off and controls the first switch to turn on.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2020
From: SHENZHEN BYD AUTO R&D COMPANY LIMITED; BYD COMPANY LIMITED
To: BYD COMPANY LIMITED
Reel/Frame 051556/0053 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 18, 2014
From: TANG, ZHEQING; DU, ZHIYONG; TANG, FU
To: SHENZHEN BYD AUTO R&D COMPANY LIMITED; BYD COMPANY LIMITED
Reel/Frame 033769/0282 →
Priority Claims (6)
CN 2011 1 0458395 · Dec 31, 2011 · national
CN 2011 2 0571932 U · Dec 31, 2011 · national
CN 2012 1 0185660 · Jun 7, 2012 · national
CN 2012 2 0266009 U · Jun 7, 2012 · national
CN 2012 1 0214502 · Jun 27, 2012 · national
CN 2012 2 0303636 U · Jun 27, 2012 · national
Continuity (1)
Related Publication 20150042277A1 · Feb 12, 2015