Control apparatus for compression-ignition type engine

US11448156B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11448156-B2
Application numberUS-201917051596-A
CountryUS
Kind codeB2
Filing dateApr 23, 2019
Priority dateMay 2, 2018
Publication dateSep 20, 2022
Grant dateSep 20, 2022

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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 engine control apparatus includes an ignition control section and an injection control section. When partial compression ignition combustion is carried out, the ignition control section causes an ignition plug to carry out: main ignition in which a spark is generated in a late period of a compression stroke or an initial period of a expansion stroke to initiate the SI combustion; and preceding ignition in which the spark is generated at earlier timing than the main ignition. Also, when the partial compression ignition combustion is carried out, the injection control section causes the injector to inject fuel at such timing that the fuel exists in a cylinder at an earlier time point than the preceding ignition. Energy of the preceding ignition is set to be lower when an in-cylinder temperature specified by an in-cylinder temperature specification section is high than when the in-cylinder temperature is low.

First claim

Opening claim text (preview).

The invention claimed is: 1. An apparatus for controlling a compression-ignition type engine that includes: a cylinder; an injector that injects fuel into the cylinder; and an ignition plug that ignites air-fuel mixture, in which fuel injected from injector and air are mixed, and that can carry out partial compression ignition combustion to subject some of the air-fuel mixture to SI combustion by spark ignition using the ignition plug and to subject the rest of the air-fuel mixture to CI combustion by self-ignition, the control apparatus for the compression-ignition type engine comprising: an in-cylinder temperature specification section that specifies an in-cylinder temperature as a temperature in the cylinder; an injection control section that controls fuel injection operation by the injector; and an ignition control section that controls ignition operation by the ignition plug, wherein, when the partial compression ignition combustion is carried out, the ignition control section causes the ignition plug to carry out: main ignition in which a spark is generated in a late period of a compression stroke or an initial period of a expansion stroke to initiate the SI combustion; and preceding ignition in which the spark is generated at earlier timing than the main ignition, wherein, when the partial compression ignition combustion is carried out, the injection control section causes the injector to inject the fuel at such timing that the fuel exists in the cylinder at an earlier time point than the preceding ignition, and wherein energy of the preceding ignition is set to be lower when the in-cylinder temperature specified by the in-cylinder temperature specification section is high than when the in-cylinder temperature is low. 2. The control apparatus for the compression-ignition type engine according to claim 1 , wherein the energy of the preceding ignition is lower than energy of the main ignition. 3. The control apparatus for the compression-ignition type engine according to claim 2 , wherein the energy of the preceding ignition is set to such energy that a high-temperature portion at equal to or higher than 850 K and lower than 1140 K is generated around the spark generated from the ignition plug and that flame propagation of the air-fuel mixture does not occur. 4. The control apparatus for the compression-ignition type engine according to claim 3 , wherein the ignition control section controls the ignition plug such that the energy of the preceding ignition is reduced with an increase in the in-cylinder temperature, and sets a reduction rate of the energy of the preceding ignition with respect to the in-cylinder temperature such that the reduction rate is higher in a range where the in-cylinder temperature is low than in a range where the in-cylinder temperature is high. 5. The control apparatus for the compression-ignition type engine according to claim 1 , wherein timing of the preceding ignition is set during an intake stroke or in an early period or a middle period of the compression stroke. 6. The control apparatus for the compression-ignition type engine according to claim 5 , wherein the preceding ignition and the main ignition are carried out by the single ignition plug having a single ignition circuit for each of the cylinders. 7. The control apparatus for the compression-ignition type engine according to claim 1 , wherein the number of the preceding ignition in one cycle is set to three or less. 8. The control apparatus for the compression-ignition type engine according to claim 1 , wherein the in-cylinder temperature specification section is a coolant temperature sensor that detects a temperature of an engine coolant as the in-cylinder temperature. 9. The control apparatus for the compression-ignition type engine according to claim 1 , wherein the in-cylinder temperature specification section estimates the in-cylinder temperature on the basis of such a specified parameter that the in-cylinder temperature is increased with an increase in a value of the parameter, and wherein the parameter is at least one of the engine coolant temperature, an engine lubricant temperature, a temperature of intake air flowing through an intake passage, a temperature of exhaust gas flowing through an exhaust passage, an engine load, and an accelerator opening degree. 10. The control apparatus for the compression-ignition type engine according to claim 1 further comprising: an openable/closable swirl valve that is provided in an intake port communicating with the cylinder, wherein an opening degree of the swirl valve is controlled such that a swirl ratio in the cylinder becomes equal to or higher than 1.5 in an operation range where the preceding ignition and the main ignition are carried out. 11. The control apparatus for the compression-ignition type engine according to claim 1 further comprising: a setting section that sets a target SI rate as a target value of a ratio of a heat generation amount by the SI combustion to a total heat generation amount in one cycle according to an engine operation condition, wherein the ignition control section sets timing of the main ignition on the basis of the target SI rate that is set by the setting section. 12. The control apparatus for the compression-ignition type engine according to claim 1 , wherein the ignition control section carries out the preceding ignition and the main ignition only in a portion on a low-load side of the operation range where the partial compression ignition combustion is carried out. 13. The control apparatus for the compression-ignition type engine according to claim 1 , wherein, in the operation range where the preceding ignition and the main ignition are carried out, the partial compression ignition combustion is carried out under lean A/F environment where an air-fuel ratio as a ratio between the air and the fuel in the cylinder exceeds 20 and is lower than 35, or the partial compression ignition combustion is carried out under lean G/F environment where a gas air-fuel ratio as a ratio between entire gas and the fuel in the cylinder exceeds 18 and is lower than 50 and the air-fuel ratio substantially matches a stoichiometric air-fuel ratio. 14. The control apparatus for the compression-ignition type engine according to claim 1 , wherein the injection control section causes the injector to carry out second injection, in which the fuel is injected prior to the preceding ignition, and first injection, in which the fuel is injected prior to said second injection. 15. The control apparatus for the compression-ignition type engine according to claim 14 , wherein the injection control section controls the injector such that a fuel injection amount by the first injection is larger than a fuel injection amount by the second injection. 16. The control apparatus for the compression-ignition type engine according to claim 4 , wherein the in-cylinder temperature specification section is a coolant temperature sensor that detects a temperature of an engine coolant as the in-cylinder temperature. 17. The control apparatus for the compression-ignition type engine according to claim 4 further comprising: a setting section that sets a target SI rate as a target value of a ratio of a heat generation amount by the SI combustion to a total heat generation amount in one cycle according to an engine operation condition, wherein the ignition control section sets timing of the main ignition on the basis of the target SI rate that is set by the setting section. 18. The control a

Assignees

Inventors

Classifications

  • Multiple injections · CPC title

  • using an estimation · CPC title

  • with positive ignition (with non-timed positive ignition F02B9/06) · CPC title

  • Electric spark ignition control, not otherwise provided for · CPC title

  • Electrical control not provided for in groups F02D41/00 - F02D43/00 · CPC title

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What does patent US11448156B2 cover?
An engine control apparatus includes an ignition control section and an injection control section. When partial compression ignition combustion is carried out, the ignition control section causes an ignition plug to carry out: main ignition in which a spark is generated in a late period of a compression stroke or an initial period of a expansion stroke to initiate the SI combustion; and precedi…
Who is the assignee on this patent?
Mazda Motor
What technology area does this patent fall under?
Primary CPC classification F02D41/3041. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Sep 20 2022 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 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).