Power conversion device, motor drive device including power conversion device, air blower and compressor including motor drive device, and air conditioner, refrigerator, and freezer including air blower and compressor

US9647604B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9647604-B2
Application numberUS-201314781064-A
CountryUS
Kind codeB2
Filing dateApr 8, 2013
Priority dateApr 8, 2013
Publication dateMay 9, 2017
Grant dateMay 9, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The power conversion device includes a power-supply shunt resistance provided between an inverter and the negative-voltage side of a DC power supply, respective-phase lower-arm shunt resistances provided between the power-supply shunt resistance and respective-phase lower-arm switching elements, a first overcurrent detection unit performing overcurrent detection on a current that flows through the power-supply shunt resistance on the basis of a power-supply shunt-resistance voltage, and a second overcurrent detection unit performing overcurrent detection on each current that flows through the respective-phase lower-arm shunt resistances on the basis of respective-phase lower-arm voltages, wherein overcurrent detection is performed on each phase current using either one of the overcurrent detection result of the first overcurrent detection unit and the overcurrent detection result of the second overcurrent detection unit.

First claim

Opening claim text (preview).

The invention claimed is: 1. A power conversion device that converts DC power supplied from a DC power supply to AC power and that supplies the AC power to a load, the power conversion device comprising: an inverter that is configured by connecting arms in parallel, each of the arms including an upper-arm switching element and a lower-arm switching element; a power-supply shunt resistance that is provided on a current path between the inverter and the DC power supply; respective-phase lower-arm shunt resistances that are provided between the power-supply shunt resistance and the lower-arm switching elements for respective phases, respectively; a first overcurrent detection unit to detect overcurrent of a current that flows through the power-supply shunt resistance; a second overcurrent detection unit to detect overcurrent of at least one of currents that flow through the respective-phase lower-arm shunt resistances; and a control unit to check overcurrent by using either one of a detection result of the first overcurrent detection unit and a detection result of the second overcurrent detection unit and stop outputting a drive signal to the inverter in accordance with a check result, wherein the control unit selects a detection result of the first overcurrent detection unit during a period within which a drive signal that turns on one or two of the upper-arm switching elements is generated, and the control unit selects a detection result of the second overcurrent detection unit during a period within which a drive signal that turns off all the upper-arm switching elements is generated. 2. A power conversion device that converts DC power supplied from a DC power supply to AC power and that supplies the AC power to a load, the power conversion device comprising: an inverter that is configured by connecting arms in parallel, each of the arms including an upper-arm switching element and a lower-arm switching element; a power-supply shunt resistance that is provided on a current path between the inverter and the DC power supply; respective-phase lower-arm shunt resistances that are provided between the power-supply shunt resistance and the lower-arm switching elements for respective phases, respectively; a first overcurrent detection unit to detect overcurrent of a current that flows through the power-supply shunt resistance; a second overcurrent detection unit to detect overcurrent of at least one of currents that flow through the respective-phase lower-arm shunt resistances; and a control unit to check overcurrent by using either one of a detection result of the first overcurrent detection unit and a detection result of the second overcurrent detection unit and stop outputting a drive signal to the inverter in accordance with a check result, wherein the control unit selects either one of a detection result of the first overcurrent detection unit and a detection result of the second overcurrent detection unit in accordance with a magnitude of a modulation ratio of the inverter. 3. The power conversion device according to claim 1 , wherein in the first overcurrent detection unit, a first threshold value for the power-supply shunt-resistance voltage is set in advance, and, when the power-supply shunt-resistance voltage is equal to or less than the first threshold value, the first overcurrent detection unit outputs a value as an overcurrent detection result to the control unit, with the value indicating that a current value of a current that flows through the power-supply shunt resistance is normal, and when the power-supply shunt-resistance voltage is greater than the first threshold value, the first overcurrent detection unit outputs a value as an overcurrent detection result to the control unit, with the value indicating that overcurrent flows through the power-supply shunt resistance, and in the second overcurrent detection unit, at least one of a second threshold value and a third threshold value, which is greater than the second threshold value, for the respective-phase lower-arm voltages is set in advance, and, when the respective-phase lower-arm voltages are equal to or greater than the second threshold value or are equal to or less than the third threshold value or when the respective-phase lower-arm voltages are equal to or greater than the second threshold value and equal to or less than the third threshold value, the second overcurrent detection unit outputs a value as an overcurrent detection result to the control unit, with the value indicating that a current value of each current that flows through the respective-phase lower-arm shunt resistances is normal, and when at least one of the respective-phase lower-arm voltages is less than the second threshold value or greater than the third threshold value, the second overcurrent detection unit outputs a value as an overcurrent detection result to the control unit, with the value indicating that overcurrent flows through the respective-phase lower-arm shunt resistances. 4. The power conversion device according to claim 1 , wherein the control unit includes an overcurrent-detection-result switching unit to switch between an overcurrent detection result of the first overcurrent detection unit and an overcurrent detection result of the second overcurrent detection unit and output the overcurrent detection result, a state holding unit to hold therein an output of the overcurrent-detection-result switching unit, and an inverter-drive stopping unit to stop outputting each of the drive signals when an output of the state holding unit is a value indicating that overcurrent flows through the power-supply shunt resistance or through any of the respective-phase lower-arm shunt resistances. 5. A motor drive device comprising the power conversion device according to claim 1 . 6. An air blower comprising the motor drive device according to claim 5 . 7. A compressor comprising the motor drive device according to claim 5 . 8. An air conditioner comprising the air blower according to claim 6 . 9. A power conversion device that converts DC power supplied from a DC power supply to AC power and that supplies the AC power to a load, the power conversion device comprising: an inverter that is configured by connecting arms in parallel, each of the arms including an upper-arm switching element and a lower-arm switching element; a power-supply shunt resistance that is provided on a current path between the inverter and the DC power supply; respective-phase lower-arm shunt resistances that are provided between the power-supply shunt resistance and the lower-arm switching elements for respective phases, respectively; a first overcurrent detection unit to detect overcurrent of a current that flows through the power-supply shunt resistance; a second overcurrent detection unit to detect overcurrent of at least one of currents that flow through the respective-phase lower-arm shunt resistances; and a control unit to check overcurrent by using either one of a detection result of the first overcurrent detection unit and a detection result of the second overcurrent detection unit and stop outputting a drive signal to the inverter in accordance with a check result, wherein the control unit stops outputting a detection result of the second overcurrent detection unit during a period within which a drive signal that turns on one or two of the upper-arm switching elements is generated, and the control unit stops outputting a detection result of the first overcurrent detection unit during a period within which a drive signal that turns off all the upper-arm switching elements is generated. 10. The power conversion device according to claim 9 , wherein in the first overcurrent

Assignees

Inventors

Classifications

  • using DC to AC converters or inverters (H02P27/05 takes precedence) · CPC title

  • H02P29/027Primary

    the fault being an over-current · CPC title

  • for converters; for rectifiers {(forming part of the control circuit of the converter, see the relevant group in H02M)} · CPC title

  • responsive to abnormalities in the output circuit, e.g. short circuit · CPC title

  • the pump being electrically driven (F04D25/08 takes precedence) · CPC title

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What does patent US9647604B2 cover?
The power conversion device includes a power-supply shunt resistance provided between an inverter and the negative-voltage side of a DC power supply, respective-phase lower-arm shunt resistances provided between the power-supply shunt resistance and respective-phase lower-arm switching elements, a first overcurrent detection unit performing overcurrent detection on a current that flows through …
Who is the assignee on this patent?
Mitsubishi Electric Corp
What technology area does this patent fall under?
Primary CPC classification H02P29/027. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 09 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).