IP Library Granted Patent US 11,258,290
Granted Patent B2
US 11,258,290 · App. 16/998,331 · Granted Feb 22, 2022

Power supply apparatus

Inventors: Yukitaka Monden (Kawasaki, JP); Yoichi Morishima (Sumida, JP)
Assignees: KAISHA TOSHIBA; TOSHIBA INFRASTRUCTURE SYSTEMS & SOLUTIONS CORPORATION
H02J7/04H02J3/32H02J7/0013H02J7/345H02J2207/20H02J2207/50H02P27/06
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Quick Facts
Patent No.
US 11,258,290
App. No.
16/998,331
Granted
Feb 22, 2022
Kind
B2
Abstract

A power supply apparatus includes a control circuit, and first and second power storage connected to a DC link circuit between an inverter and a converter. The control circuit, while the AC power supply is in a normal condition, controls the first power storage to discharge when the control circuit detects that electric power consumption exceeds a threshold, and controls at least one of the first and second power storage to charge when the control circuit detects that the electric power consumption does not exceed the threshold, and while the AC power supply is in an abnormal condition, controls the second power storage to discharge, and controls the first power to discharge when it is detected that the electric power consumption exceeds the threshold.

Claims (50)

1. A power supply apparatus, comprising:

a control circuit;

a converter to convert first AC electric power, received from an AC power supply, into DC electric power;

an inverter, connected to the converter via a DC link circuit, to convert the DC electric power into second AC electric power;

a first power storage unit, electrically connected to the DC link circuit, to supply and receive DC electric power to and from the DC link circuit; and

a second power storage unit, having a larger electric power storing capacity than the first power storage unit and electrically connected to the DC link circuit, to supply and receive DC electric power to and from the DC link circuit;

wherein the control circuit, while the AC power supply is in a normal condition,

controls the first power storage unit to discharge when the control circuit detects that electric power consumption, by an external device connected to the power supply apparatus, exceeds a threshold, and controls at least one of the first power storage unit or the second power storage unit to charge when the control circuit detects that the electric power consumption does not exceed the threshold, and

while the AC power supply is in an abnormal condition,

controls the second power storage unit to discharge, and

controls the first power unit to discharge when it is detected that the electric power consumption exceeds the threshold.

2. The power supply apparatus according to claim 1 , wherein

the control circuit, while the AC power supply is in the abnormal condition and the second power storage unit is controlled to discharge, controls the first power storage unit to charge when the control circuit detects that the electric power consumption does not exceed the threshold.

3. The power supply apparatus according to claim 1 , wherein

the first power storage unit includes a capacitor and a first charge/discharge circuit to charge and discharge the capacitor, the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit, and the first charge/discharge circuit and the second charge/discharge circuit are connected to the DC link circuit via a common DC line.

4. The power supply apparatus according to claim 1 , wherein

the first power storage unit includes a capacitor and a first charge/discharge circuit to charge and discharge the capacitor, the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit, the first charge/discharge circuit is connected to the DC link circuit via a DC line, and the second charge/discharge circuit is connected, via the first charge/discharge circuit, to the DC link circuit.

5. The power supply apparatus according to claim 1 , wherein

the first power storage unit includes a capacitor, the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit, the capacitor is connected to a high-potential line and a low-potential line of the DC link circuit, and the second charge/discharge circuit are connected to the DC link circuit via a DC line.

6. A power supply apparatus, comprising:

a control circuit;

a first power storage unit, electrically connected to a DC link circuit, to supply and receive DC electric power to and from the DC link circuit; and

a second power storage unit, having different characteristics from the first power storage unit and electrically connected to the DC link circuit, to supply and receive DC electric power to and from the DC link circuit;

wherein the control circuit controls predetermined one of the first power storage unit and the second power storage unit to discharge, when the control circuit detects that electric power consumption, by an external device connected to the power supply apparatus, exceeds a threshold.

7. The power supply apparatus according to claim 6 , wherein

the predetermined one of the first power storage unit and the second power storage unit has a larger power output characteristic than the other power storage unit.

8. The power supply apparatus according to claim 6 , wherein

the first power storage unit includes a capacitor and a first charge/discharge circuit to charge and discharge the capacitor, and the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit.

9. The power supply apparatus according to claim 6 , wherein

the first power storage unit includes a capacitor placed between a positive line and a negative line of the DC link circuit, and the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit.

10. A power supply method, comprising:

converting first AC electric power, received from an AC power supply, into DC electric power;

receiving by a DC link circuit, the converted DC electric power and converting the received DC electric power into second AC electric power;

supplying and receiving into a first power storage unit DC electric power to and from the DC link circuit; and

supplying and receiving into a second power storage unit, having a larger electric power storing capacity than the first power storage unit and electrically connected to the DC link circuit, DC electric power to and from the DC link circuit;

wherein while the AC power supply is in a normal condition,

controlling, by a control circuit, the first power storage unit to discharge when the control circuit detects that electric power consumption, by an external device connected to the power supply apparatus, exceeds a threshold, and controlling at least one of the first power storage unit or the second power storage unit to charge when the control circuit detects that the electric power consumption does not exceed the threshold, and

while the AC power supply is in an abnormal condition,

controlling the second power storage unit to discharge, and

controlling the first power unit to discharge when it is detected that the electric power consumption exceeds the threshold.

11. The power supply method according to claim 10 , wherein

the controlling, while the AC power supply is in the abnormal condition and the second power storage unit is controlled to discharge, controls the first power storage unit to charge when the control circuit detects that the electric power consumption does not exceed the threshold.

12. The power supply method according to claim 10 , wherein

the first power storage unit includes a capacitor and a first charge/discharge circuit to charge and discharge the capacitor, the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit, and the first charge/discharge circuit and the second charge/discharge circuit are connected to the DC link circuit via a common DC line.

13. The power supply method according to claim 10 , wherein

the first power storage unit includes a capacitor and a first charge/discharge circuit to charge and discharge the capacitor, the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit, the first charge/discharge circuit is connected to the DC link circuit via a DC line, and the second charge/discharge circuit is connected, via the first charge/discharge circuit, to the DC link circuit.

14. The power supply method according to claim 10 , wherein

the first power storage unit includes a capacitor, the second power storage unit includes a secondary battery unit and a second charge/discharge circuit to charge and discharge the secondary battery unit, the capacitor is connected to a high-potential line and a low-potential line of the DC link circuit, and the second charge/discharge circuit are connected to the DC link circuit via a DC line.

15. The power supply method according to claim 10 , wherein

the first power storage unit has a larger power output characteristic than the second other power storage unit.

Assignments (2)
MERGER Recorded Jul 29, 2025
From: TOSHIBA INFRASTRUCTURE SYSTEMS & SOLUTIONS CORPORATION
To: KABUSHIKI KAISHA TOSHIBA
Reel/Frame 072239/0263 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2020
From: MONDEN, YUKITAKA; MORISHIMA, YOICHI
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA INFRASTRUCTURE SYSTEMS & SOLUTIONS CORPORATION
Reel/Frame 053553/0006 →
Priority Claims (1)
JP JP2019-154066 · Aug 26, 2019 · national
Continuity (1)
Related Publication 20210066951A1 · Mar 4, 2021
Cited By (1)
US 12,402,533