Control device for hybrid vehicle, and hybrid vehicle incorporating control device

US10065630B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10065630-B2
Application numberUS-201615278505-A
CountryUS
Kind codeB2
Filing dateSep 28, 2016
Priority dateApr 7, 2010
Publication dateSep 4, 2018
Grant dateSep 4, 2018

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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.

An ECU includes a running mode control unit, a Wout control unit, and an engine start/stop determination unit. The running mode control unit controls switching of a running mode including a CD mode in which an engine is stopped and running using a motor generator alone is given priority, and a CS mode in which the engine is operated and the SOC of a power storage device is maintained at a predetermined target. The engine start/stop determination unit carries out a start determination of the engine based on a discharge allowable power indicating electric power that can be discharged by the power storage device. The Wout control unit modifies the discharge allowable power based on the running mode and operation/stop of the engine.

First claim

Opening claim text (preview).

The invention claimed is: 1. A control device for a hybrid vehicle, said hybrid vehicle including an internal combustion engine generating vehicle driving force, a power storage device capable of being charged and discharged, and an electric motor receiving supply of electric power from said power storage device for generating vehicle driving force, said control device comprising: a running mode control unit controlling switching of a running mode including a first mode in which said internal combustion engine is stopped and running using said electric motor alone is given priority, and a second mode in which said internal combustion engine is operated and a state of charge indicating a charging state of said power storage device is maintained at a predetermined target, a determination unit carrying out a start determination of said internal combustion engine based on a discharge allowable power indicating electric power that can be discharged by said power storage device, a discharge allowable power control unit modifying said discharge allowable power based on said running mode and operation/stop of said internal combustion engine, and a rate processing unit modifying said discharge allowable power at a predetermined rate in modification of said discharge allowable power, wherein, when said running mode is at said first mode and said internal combustion engine is stopped, said discharge allowable power control unit increases said discharge allowable power than when said running mode is at said first mode and said internal combustion engine is operating, or than when said running mode is at said second mode, wherein a modifying rate of said discharge allowable power when said discharge allowable power returns from an increased state is smaller than the modifying rate of said discharge allowable power when said discharge allowable power is increased. 2. A control device for a hybrid vehicle, said hybrid vehicle including an internal combustion engine generating vehicle driving force, a power storage device capable of being charged and discharged, and an electric motor receiving supply of electric power from said power storage device for generating vehicle driving force, said control device comprising: a running mode control unit controlling switching of a running mode including a first mode in which said internal combustion engine is stopped and running using said electric motor alone is given priority, and a second mode in which said internal combustion engine is operated and a state of charge indicating a charging state of said power storage device is maintained at a predetermined target, a determination unit carrying out a start determination of said internal combustion engine based on a discharge allowable power indicating electric power that can be discharged by said power storage device, a discharge allowable power control unit modifying said discharge allowable power based on said running mode and operation/stop of said internal combustion engine, and a rate processing unit modifying said discharge allowable power at a predetermined rate in modification of said discharge allowable power, wherein, when said running mode is at said first mode and said internal combustion engine is stopped, said discharge allowable power control unit increases said discharge allowable power than when said running mode is at said first mode and said internal combustion engine is operating, or than when said running mode is at said second mode, and wherein a modifying rate of said discharge allowable power when said discharge allowable power is increased is greater than the modifying rate of said discharge allowable power when said discharge allowable power returns from an increased state. 3. A control device for a hybrid vehicle, said hybrid vehicle including an internal combustion engine generating vehicle driving force, a power storage device capable of being charged and discharged, and an electric motor receiving supply of electric power from said power storage device for generating vehicle driving force, said control device comprising: a running mode control unit controlling switching of a running mode including a first mode in which said internal combustion engine is stopped and running using said electric motor alone is given priority, and a second mode in which said internal combustion engine is operated and a state of charge indicating a charging state of said power storage device is maintained at a predetermined target, a determination unit carrying out a start determination of said internal combustion engine based on a discharge allowable power indicating electric power that can be discharged by said power storage device, and a discharge allowable power control unit modifying said discharge allowable power based on said running mode and operation/stop of said internal combustion engine, wherein, when said running mode is at said first mode and said internal combustion engine is stopped, said discharge allowable power control unit increases said discharge allowable power than when said running mode is at said first mode and said internal combustion engine is operating, or than when said running mode is at said second mode, a temporary-increase processing unit temporarily increasing said discharge allowable power when said internal combustion engine is started, and wherein said temporary-increase processing unit sets processing of temporarily increasing said discharge allowable power non-executable when said discharge allowable power has been increased by said discharge allowable power control unit. 4. A hybrid vehicle including a control device defined in claim 1 . 5. A hybrid vehicle including a control device defined in claim 2 . 6. A hybrid vehicle including a control device defined in claim 3 .

Assignees

Inventors

Classifications

  • Speed · CPC title

  • Conditions for starting or stopping the engine or for deactivating the idle-start-stop mode · CPC title

  • including control of combustion engines · CPC title

  • Conjoint control of different elements · CPC title

  • including control of electric propulsion units, e.g. motors or generators · CPC title

Patent family

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Frequently asked questions

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What does patent US10065630B2 cover?
An ECU includes a running mode control unit, a Wout control unit, and an engine start/stop determination unit. The running mode control unit controls switching of a running mode including a CD mode in which an engine is stopped and running using a motor generator alone is given priority, and a CS mode in which the engine is operated and the SOC of a power storage device is maintained at a prede…
Who is the assignee on this patent?
Toyota Motor Co Ltd
What technology area does this patent fall under?
Primary CPC classification B60W20/13. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Sep 04 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 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).