IP Library Granted Patent US 9,379,617
Granted Patent B2
US 9,379,617 · App. 14/372,449 · Granted Jun 28, 2016

Resonant DC-DC converter control device

Inventor: Yukihiro Nishikawa (Hino, JP)
Assignee: FUJI ELECTRIC CO., LTD.
H02M3/33507H02M1/081H02M1/088H02M3/3353H02M3/33553H02M3/33569H02M2001/0003H02M2001/0032H02M2001/0058Y02B70/1433Y02B70/16
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Quick Facts
Patent No.
US 9,379,617
App. No.
14/372,449
Granted
Jun 28, 2016
Kind
B2
Abstract

A control device is configured to, when the direct current output voltage of a resonant DC-DC converter is of a value that exceeds the maximum value that can be output in a fixed frequency control region, there is a switch from fixed frequency control to frequency modulation control. Because of this, conduction loss and turn-off loss caused by backflow current among semiconductor switching elements of the resonant DC-DC converter are reduced, power conversion efficiency is improved, and the range of voltage that can be output by the resonant DC-DC converter is expanded.

Claims (34)

1. A control device for a resonant DC-DC converter, the resonant DC-DC converter including:

a direct current power supply;

a full-bridge circuit of which the input side is connected to ends of the direct current power supply and to an output side of which a primary coil of a transformer is connected via a series resonant circuit, and which is configured of semiconductor switching elements;

a rectifier circuit connected to a secondary coil of the transformer; and

a smoothing capacitor connected to an output side of the rectifier circuit, wherein,

by the semiconductor switching elements being turned on and off to cause a resonance current to flow through the series resonant circuit, a direct current output voltage is output via the transformer, the rectifier circuit, and the smoothing capacitor,

the control device comprising:

a means for detecting a quantity of electricity in accordance with a status of a load of the resonant DC-DC converter and determining a control amount for controlling the turning on and off of the semiconductor switching elements;

a frequency modulation control means for executing a frequency modulation control of the semiconductor switching elements at a frequency lower than a resonance frequency of the series resonant circuit based on the control amount;

a fixed frequency control means for executing a fixed frequency control of the semiconductor switching elements at a frequency in a vicinity of the resonance frequency based on the control amount; and

a pulse distribution means for generating drive pulses of the semiconductor switching elements based on outputs of the frequency modulation control means and the fixed frequency control means, wherein,

when the direct current output voltage of the resonant DC-DC converter reaches a value that exceeds a maximum value that can be output in a fixed frequency control region, the control amount causes a switch from a control operation by the fixed frequency control means to a control operation by the frequency modulation control means.

2. The resonant DC-DC converter control device according to claim 1 , wherein

the fixed frequency control means executes pulse width modulation control of the semiconductor switching elements.

3. The resonant DC-DC converter control device according to claim 1 , wherein

the fixed frequency control means executes phase modulation control of the semiconductor switching elements.

4. The resonant DC-DC converter control device according to claim 1 , wherein

the fixed frequency control means executes pulse width modulation control and phase modulation control of the semiconductor switching elements.

5. The resonant DC-DC converter control device according to claim 1 , wherein a direct current output voltage detection value and direct current output current detection value of the resonant DC-DC converter are used in order to determine the control amount.

6. The resonant DC-DC converter control device according to claim 2 , wherein

the fixed frequency control means compares the control amount and a carrier signal generated by the frequency modulation control means, and generates a pulse width modulation signal.

7. The resonant DC-DC converter control device according to claim 2 , wherein

when the resonant DC-DC converter is started up, a switch is made to frequency modulation control by the frequency modulation control means after the fixed frequency control means executes pulse width modulation control, thus initially charging the smoothing capacitor in a state wherein a pulse width is shorter than a half cycle of the resonance frequency of the series resonant circuit.

8. The resonant DC-DC converter control device according to claim 2 , wherein a direct current output voltage detection value and direct current output current detection value of the resonant DC-DC converter are used in order to determine the control amount.

9. The resonant DC-DC converter control device according to claim 3 , wherein

the fixed frequency control means compares the control amount and a carrier signal generated by the frequency modulation control means, generates a pulse width modulation signal, and generates a phase modulation signal from the pulse width modulation signal and a frequency modulation signal generated by the frequency modulation control means.

10. The resonant DC-DC converter control device according to claim 3 , wherein a direct current output voltage detection value and direct current output current detection value of the resonant DC-DC converter are used in order to determine the control amount.

11. The resonant DC-DC converter control device according to claim 4 , wherein

the fixed frequency control means compares the control amount and a carrier signal generated by the frequency modulation control means, generates a pulse width modulation signal, generates a phase modulation signal from the pulse width modulation signal and a frequency modulation signal generated by the frequency modulation control means, and switches between pulse width modulation control and phase modulation control in accordance with a direct current output current or direct current output voltage of the resonant DC-DC converter.

12. The resonant DC-DC converter control device according to claim 4 , wherein a direct current output voltage detection value and direct current output current detection value of the resonant DC-DC converter are used in order to determine the control amount.

13. The resonant DC-DC converter control device according to claim 6 , wherein a direct current output voltage detection value and direct current output current detection value of the resonant DC-DC converter are used in order to determine the control amount.

14. The resonant DC-DC converter control device according to claim 9 , wherein a direct current output voltage detection value and direct current output current detection value of the resonant DC-DC converter are used in order to determine the control amount.

15. The resonant DC-DC converter control device according to claim 11 , wherein

the fixed frequency control means, when the resonant DC-DC converter is started up, switches to phase modulation control after executing pulse width modulation control, thus initially charging the smoothing capacitor in a state wherein a pulse width is shorter than a half cycle of the resonance frequency of the series resonant circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2014
From: NISHIKAWA, YUKIHIRO
To: FUJI ELECTRIC CO., LTD.
Reel/Frame 033318/0380 →
Priority Claims (1)
JP 2012-021472 · Feb 3, 2012 · national
Continuity (1)
Related Publication 20140355313A1 · Dec 4, 2014