System and method for an inverter for self-excitation of an induction machine

US10014807B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10014807-B2
Application numberUS-201715406631-A
CountryUS
Kind codeB2
Filing dateJan 13, 2017
Priority dateJun 6, 2016
Publication dateJul 3, 2018
Grant dateJul 3, 2018

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 capacitor is connected between the direct current voltage terminals. Switched terminals of a first switch and a second switch are coupled in series, between the direct current voltage terminals. An electric machine or generator has one or more windings and a first phase output terminal associated with the switched terminals. A first set of blocking diodes are cascaded in series and second set of blocking diodes are cascaded in series. A first voltage supply provides a first output voltage level and a second output level switchable to the first control terminal, where the first output level is distinct from the second output level. A second voltage supply provides the first output voltage level and the second output level switchable to the second control terminal.

First claim

Opening claim text (preview).

The following is claimed: 1. An inverter system comprising: a pair of direct current voltage terminals of opposite polarity; a capacitor connected between the direct current voltage terminals; a first switch having first switched terminals and a first control terminal; a second switch having second switched terminals and a second control terminal, the switched terminals of the first switch and the second switch coupled in series, between the direct current voltage terminals; an electric machine or generator having one or more windings and a first phase output terminal associated with the switched terminals between the first switch and the second switch; a first set of blocking diodes in series; a second set of blocking diodes in series; a first voltage supply providing a first output voltage level and a second output level switchable to the first control terminal, the first output level distinct from the second output level, the first output level providing electrical energy via the first set of blocking diodes to the capacitor to charge or trickle charge the capacitor in a start-up mode to a primary voltage level; a second voltage supply providing the first output voltage level and the second output level switchable to the second control terminal, the first output level providing electrical energy via the second set of blocking diodes to the capacitor to charge to trickle charge the capacitor in the start-up mode to the primary voltage level; and in a transitional excitation mode, the electric machine capable of inducing alternating current flux in one or more windings associated with the first phase output terminal to ramp up a voltage level of the direct current voltage terminals from the primary voltage level to a secondary voltage level, where the secondary voltage level is associated with an operational mode of the inverter system. 2. The inverter system according to claim 1 wherein the primary voltage level is sufficient to enable operation of the first switch and the second switch consistent with the induction or excitation of alternating current flux in the one or more windings. 3. The inverter system according to claim 1 further comprising: during a time period associated with the transitional excitation mode, a data processor for controlling a first slope of the direct current bus voltage by a first combination of commanded quadrature-axis current and a commanded direct-axis current of the electric machine, where the direct current bus voltage increases at a rate of the first slope between the primary voltage level and the secondary voltage. 4. The inverter system according to claim 3 wherein during a time period associated with the transitional excitation mode, the direct current bus voltage increases at a rate of the first slope and a rate of a second slope between an intermediate voltage level and the secondary voltage level, the second slope being greater than the first slope, wherein that data processor is adapted to control the first slope by a first combination of commanded quadrature-axis current and a commanded direct-axis current of the electric machine and the data processor is adapted to control the second slope by a second combination of quadrature-axis current and an inflated commanded direct axis current adjusted based on a mathematical relationship. 5. The inverter system according to claim 4 wherein the mathematical relationship is between d-axis residual voltage, the observed direct current bus voltage and the commanded q-axis voltage in which residual voltage is proportional to a mathematical function of the measured, observed direct current bus voltage and the commanded q-axis voltage. 6. The inverter system according to claim 1 wherein the first voltage supply is associated with a first control switch between the first control terminal the first output voltage level and a second control switch between the first control terminal and the second output level. 7. The inverter system according to claim 6 wherein the first control switch is off, or inactive, during the start-up mode and wherein the first control switch alternates between off and on during an operational mode in accordance with modulation commands after the transitional excitation mode or completion of self-excitation of the of alternating current flux in one or more windings associated with the first phase output terminal. 8. The inverter system according to claim 6 wherein the second control switch is on, or inactive, during the start-up mode and wherein the second control switch alternates between on and off, during the operational mode. 9. The inverter system according to claim 1 wherein the first output voltage level is greater than the second output level, and wherein at the primary voltage level the capacitor is charged to twice the first voltage level, less a first voltage drop associated with the first set of diodes and a first resistor in series with the first set of diodes and less a second voltage drop associated with the second set of diodes and a second resistor in series with the second set of diodes. 10. The inverter system according to claim 1 further comprising an electrical direct current load or battery coupled between the direct current terminals during the operational mode and after the start-up mode. 11. The inverter system according to claim 1 wherein the electrical direct current load or battery is coupled to the direct current terminals via a load switch that is off during the start-up mode and on during an operational mode. 12. The inverter system according to claim 1 further comprising: a third switch having third switched terminals and a third control terminal; a fourth switch having fourth switched terminals and a fourth control terminal, the switched terminals of the third switch and the fourth switch coupled in series, between the direct current voltage terminals; a second phase output terminal associated with the switched terminals between the third switch and the fourth switch; a third set of blocking diodes in series; a fourth set of blocking diodes in series; a third voltage supply providing a first output voltage level and a second output level switchable to the third control terminal, the first output level providing electrical energy via the third set of blocking diodes to the capacitor to charge or trickle charge the capacitor in a start-up mode to a primary voltage level; in a transitional excitation mode, the electric machine inducing alternating current flux in one or more windings associated with the second phase output terminal to ramp up or increase a voltage level of the direct current voltage terminals from a primary voltage level to a secondary voltage level; and a fourth voltage supply providing the first output voltage level and the second output level switchable to the fourth control terminal, the first output level providing electrical energy via the fourth set of blocking diodes to the capacitor to charge or trickle charge the capacitor in a start-up mode to the primary voltage level; and in the transitional excitation mode, the electric machine inducing alternating current flux in one or more windings associated with the first phase output terminal to ramp up a voltage level of the direct current voltage terminals from the primary voltage level to a secondary voltage level. 13. The inverter system according to claim 12 where the first phase output terminal and the second phase output terminal are connected in parallel to the windings to enhance collectively the output power capacity of the first voltage supply, the second voltage supply, the third voltage supply and the fourth voltage sup

Assignees

Inventors

Classifications

  • H02P9/30Primary

    using semiconductor devices · CPC title

  • Field phase angle calculation based on rotor voltage equation by adding slip frequency and speed proportional frequency · CPC title

  • H02P1/26Primary

    for starting an individual polyphase induction motor · CPC title

  • H02P9/08Primary

    Control of generator circuit during starting or stopping of driving means, e.g. for initiating excitation · CPC title

  • of the asynchronous type · 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 US10014807B2 cover?
A capacitor is connected between the direct current voltage terminals. Switched terminals of a first switch and a second switch are coupled in series, between the direct current voltage terminals. An electric machine or generator has one or more windings and a first phase output terminal associated with the switched terminals. A first set of blocking diodes are cascaded in series and second set…
Who is the assignee on this patent?
Deere & Co
What technology area does this patent fall under?
Primary CPC classification H02P9/30. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jul 03 2018 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).