Matrix converter and method for compensating for output voltage error

US9276486B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9276486-B2
Application numberUS-201414541040-A
CountryUS
Kind codeB2
Filing dateNov 13, 2014
Priority dateNov 14, 2013
Publication dateMar 1, 2016
Grant dateMar 1, 2016

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

A matrix converter includes a power converter, a command generator, and a commutation controller. The power converter includes bidirectional switches each having a conducting direction controllable by switching elements. The bidirectional switches are disposed between input terminals coupled to phases of an AC power source and output terminals coupled to phases of a load. The command generator generates a control command based on a voltage command specifying a pulse width of pulse width modulation control. The commutation controller controls the switching elements by a commutation method based on the control command so as to perform commutation control. The command generator includes a corrector to, when an error in an output voltage is caused by the commutation control, correct the pulse width specified in the voltage command in generating the control command to reduce the error in the output voltage.

First claim

Opening claim text (preview).

What is claimed as new and desired to be secured by Letters Patent of the United States is: 1. A matrix converter comprising: a power converter comprising a plurality of bidirectional switches each having a conducting direction controllable by a plurality of switching elements, the plurality of bidirectional switches being disposed between a plurality of input terminals and a plurality of output terminals, the plurality of input terminals being respectively coupled to phases of an AC power source, the plurality of output terminals being respectively coupled to phases of a load; a command generator configured to generate a control command based on a voltage command specifying a pulse width of pulse width modulation control; and a commutation controller configured to control the plurality of switching elements by a predetermined commutation method based on the control command so as to perform commutation control, the command generator comprising a corrector configured to, when an error in an output voltage is caused by the commutation control, correct the pulse width specified in the voltage command in generating the control command so as to reduce the error in the output voltage, and wherein the corrector is configured to calculate a compensation amount corresponding to a timing difference caused by the commutation control between a decrease in the output voltage and an increase in the output voltage, and configured to correct the pulse width based on the compensation amount. 2. The matrix converter according to claim 1 , wherein the corrector is configured to obtain the compensation amount based on a polarity of an output current obtained from the power converter. 3. The matrix converter according to claim 1 , wherein the corrector is configured to obtain the compensation amount based on a type of the commutation method. 4. The matrix converter according to claim 1 , wherein the corrector comprises a compensation amount calculator configured to calculate the compensation amount each time the control command is changed, and an adjustor configured to adjust the pulse width based on the compensation amount obtained by the compensation amount calculator. 5. The matrix converter according to claim 4 , wherein the command generator is configured to use a predetermined carrier wave to calculate the control command, wherein the commutation controller is configured to perform the commutation control when the control command is changed, and wherein the compensation amount calculator is configured to calculate the compensation amount based on a frequency of the carrier wave and based on a number of tops and valleys of the carrier wave in a cycle in which the compensation amount is calculated. 6. The matrix converter according to claim 2 , wherein the corrector is configured to obtain the compensation amount based on a type of the commutation method. 7. The matrix converter according to claim 2 , wherein the corrector comprises a compensation amount calculator configured to calculate the compensation amount each time the control command is changed, and an adjustor configured to adjust the pulse width based on the compensation amount obtained by the compensation amount calculator. 8. The matrix converter according to claim 3 , wherein the corrector comprises a compensation amount calculator configured to calculate the compensation amount each time the control command is changed, and an adjustor configured to adjust the pulse width based on the compensation amount obtained by the compensation amount calculator. 9. The matrix converter according to claim 6 , wherein the corrector comprises a compensation amount calculator configured to calculate the compensation amount each time the control command is changed, and an adjustor configured to adjust the pulse width based on the compensation amount obtained by the compensation amount calculator. 10. The matrix converter according to claim 7 , wherein the command generator is configured to use a predetermined carrier wave to calculate the control command, wherein the commutation controller is configured to perform the commutation control when the control command is changed, and wherein the compensation amount calculator is configured to calculate the compensation amount based on a frequency of the carrier wave and based on a number of tops and valleys of the carrier wave in a cycle in which the compensation amount is calculated. 11. The matrix converter according to claim 8 , wherein the command generator is configured to use a predetermined carrier wave to calculate the control command, wherein the commutation controller is configured to perform the commutation control when the control command is changed, and wherein the compensation amount calculator is configured to calculate the compensation amount based on a frequency of the carrier wave and based on a number of tops and valleys of the carrier wave in a cycle in which the compensation amount is calculated. 12. The matrix converter according to claim 9 , wherein the command generator is configured to use a predetermined carrier wave to calculate the control command, wherein the commutation controller is configured to perform the commutation control when the control command is changed, and wherein the compensation amount calculator is configured to calculate the compensation amount based on a frequency of the carrier wave and based on a number of tops and valleys of the carrier wave in a cycle in which the compensation amount is calculated. 13. A method for compensating for an output voltage error, the method comprising: generating a control command based on a voltage command specifying a pulse width of pulse width modulation control; and controlling a plurality of switching elements by a predetermined commutation method based on the control command so as to perform commutation control, the plurality of switching elements each having a controllable conducting direction and being included in a plurality of bidirectional switches, the plurality of bidirectional switches being coupled between phases of an AC power supply and phases of a load, the generating step comprising, when an output voltage error in an output voltage is caused by the commutation control, correcting the pulse width specified in the voltage command in generating the control command so as to reduce the output voltage error, and wherein the generating step further comprises calculating a compensation amount corresponding to a timing difference caused by the commutation control between a decrease in the output voltage and an increase in the output voltage, and correcting the pulse width based on the compensation amount. 14. A matrix converter comprising: a power converter comprising a plurality of bidirectional switches each having a conducting direction controllable by a plurality of switching elements, the plurality of bidirectional switches being disposed between a plurality of input terminals and a plurality of output terminals, the plurality of input terminals being respectively coupled to phases of an AC power source, the plurality of output terminals being respectively coupled to phases of a load; command generating means for generating a control command based on a voltage command specifying a pulse width of pulse width modulation control; and commutation controlling means for controlling the plurality of switching elements by a predetermined commutation method based on the control command so as to perform commutation control, the command generating means comprising correcting means for, when an error in an output voltage is caused by the c

Assignees

Inventors

Classifications

  • for the simultaneous control of series or parallel connected semiconductor devices · CPC title

  • H02M5/293Primary

    using semiconductor devices only · CPC title

  • Electricity · mapped topic

  • Electricity · mapped topic

  • H02M5/297Primary

    for conversion of frequency · CPC title

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US9276486B2 cover?
A matrix converter includes a power converter, a command generator, and a commutation controller. The power converter includes bidirectional switches each having a conducting direction controllable by switching elements. The bidirectional switches are disposed between input terminals coupled to phases of an AC power source and output terminals coupled to phases of a load. The command generator …
Who is the assignee on this patent?
Yaskawa Denki Seisakusho Kk
What technology area does this patent fall under?
Primary CPC classification H02M5/293. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Mar 01 2016 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 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).