IP Library Granted Patent US 12,562,653
Granted Patent B2
US 12,562,653 · App. 18/246,252 · Granted Feb 24, 2026

Power conversion device

Inventors: Fuminori Nakamura (Tokyo, JP); Yoshiyuki Kono (Tokyo, JP); Ryosuke Uda (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
H02M7/4835H02M1/12H02M1/0054
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Quick Facts
Patent No.
US 12,562,653
App. No.
18/246,252
Granted
Feb 24, 2026
Kind
B2
Abstract

A power conversion device includes a self-commutated power converter that performs power conversion between an AC circuit and a DC circuit, and a control device that controls switching operation of a switching element included in the self-commutated power converter. The control device performs first control to increase a switching frequency of the switching element when a control command value for the self-commutated power converter becomes equal to or greater than a first threshold value.

Claims (28)

1 . A power conversion device comprising:

a self-commutated power converter to perform power conversion between an AC power system and a DC circuit; and

a control device to control switching operation of a switching element included in the self-commutated power converter,

wherein the control device performs first control to increase a switching frequency of the switching element when a control command value for the self-commutated power converter, corresponding to a quantity of electricity of the AC power system or a calculated value based on the quantity of electricity, becomes equal to or greater than a first threshold value,

wherein the control command value corresponding to the quantity of electricity of the AC power system is an AC voltage command value corresponding to an AC voltage of the AC power system or an AC current command value corresponding to an AC current of the AC power system,

wherein the control command value corresponding to the calculated value is an active power command value corresponding to an active power calculated based on the AC voltage and the AC current, a reactive power command value corresponding to a reactive power calculated based on the AC voltage and the AC current, an apparent power command value corresponding to an apparent power calculated based on the AC voltage and the AC current, or a reactive current command value corresponding to a reactive current calculated based on the AC voltage and the AC current.

2 . The power conversion device according to claim 1 , wherein when the control command value becomes less than the first threshold value after the first control is performed, the control device performs second control to reduce the increased switching frequency of the switching element.

3 . The power conversion device according to claim 1 , wherein when the control command value becomes less than a second threshold value smaller than the first threshold value after the first control is performed, the control device performs second control to reduce the increased switching frequency of the switching element.

4 . The power conversion device according claim 1 , wherein the control device performs the first control until a first time period elapses since the control command value becomes equal to or greater than the first threshold value.

5 . The power conversion device according to claim 1 , wherein

the control device

performs the first control until a first time period elapses since the control command value becomes equal to or greater than the first threshold value, and

performs second control to reduce the switching frequency of the switching element that is increased in accordance with the first control, when the control command value is less than the first threshold value when the first time period elapses since the control command value becomes equal to or greater than the first threshold value.

6 . The power conversion device according to claim 1 , wherein the first control includes increasing a switching frequency of the switching element, based on a difference between the control command value and the first threshold value.

7 . A power conversion device comprising:

a self-commutated power converter to perform power conversion between an AC circuit and a DC circuit; and

a control device to control switching operation of a switching element included in the self-commutated power converter,

the self-commutated power converter including a plurality of leg circuits,

the leg circuits each including a plurality of converter cells cascaded to each other, the converter cells each including a capacitor and the switching element,

wherein the control device performs control to increase a switching frequency of the switching element when circulating current circulating between the leg circuits is equal to or greater than a reference value, or when a variation range of a voltage mean value of the capacitors is equal to or greater than a reference variation range.

8 . A power conversion device comprising:

a self-commutated power converter to perform power conversion between an AC circuit and a DC circuit; and

a control device to control switching operation of a switching element included in the self-commutated power converter, wherein

the control device

receives at least one of an operating state of system equipment provided in the AC circuit and instruction information for specifying an operation mode of the self-commutated power converter, and

performs control to increase a switching frequency of the switching element when at least one of a first condition that the system equipment is in a stopped state and a second condition that the operation mode according to the instruction information is a prescribed mode is satisfied.

9 . The power conversion device according to claim 8 , wherein the prescribed mode includes at least one of: a starting mode for starting the self-commutated power converter; a black start mode of restoring the AC circuit from a blackout state without receiving power from another power source; a passive system mode of operating the self-commutated power converter in a state in which no power source is connected to the AC circuit and only a load is connected; a derating mode of operating the self-commutated power converter at a rated value or lower; and a power flow reversal mode of reversing reverse converter operation and forward converter operation in the self-commutated power converter.

10 . The power conversion device according to claim 1 , wherein when the control command value becomes less than the first threshold value after the first control is performed, the control device performs second control to reduce the increased switching frequency of the switching element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2023
From: NAKAMURA, FUMINORI; KONO, YOSHIYUKI; UDA, RYOSUKE
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 063063/0042 →
Continuity (1)
Related Publication 20230361690A1 · Nov 9, 2023
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