Control device for internal combustion engine

US9650979B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9650979-B2
Application numberUS-201314890046-A
CountryUS
Kind codeB2
Filing dateMay 14, 2013
Priority dateMay 14, 2013
Publication dateMay 16, 2017
Grant dateMay 16, 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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  7. Citations and related patents

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Abstract

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A target air amount for achieving a requested torque is back-calculated from the requested torque using a parameter that provides a conversion efficiency of an air amount to torque. The value of the parameter gradually changes to lower the conversion efficiency as the requested torque decreases from a second reference value towards a first reference value. The first reference value is calculated based on the engine speed. The second reference value is calculated based on an air amount with which the first reference value is achieved under a second air-fuel ratio, and a first air-fuel ratio. The target air-fuel ratio is set to the first air-fuel ratio when the requested torque is greater than the first reference value, and is switched from the first air-fuel ratio to the second air-fuel ratio when the requested torque decreases to a value equal to or less than the first reference value.

First claim

Opening claim text (preview).

The invention claimed is: 1. A control device for an internal combustion engine that includes a first actuator that changes an amount of air that is drawn into a cylinder, a second actuator that supplies fuel into a cylinder, and a third actuator that ignites an air-fuel mixture in a cylinder, and that is configured to be capable of selecting between operation according to a first air-fuel ratio and operation according to a second air-fuel ratio that is leaner than the first air-fuel ratio, the control device comprising: requested torque reception means for receiving a requested torque; reference value calculation means for calculating a first reference value with respect to a torque based on an engine speed of the internal combustion engine, and calculating a second reference value with respect to the torque based on the first air-fuel ratio and an air amount with which the first reference value can be achieved under the second air-fuel ratio; target air-fuel ratio switching means for setting a target air-fuel ratio to the first air-fuel ratio in response to the requested torque being greater than the first reference value, and switching the target air-fuel ratio from the first air-fuel ratio to the second air-fuel ratio in response to a decrease in the requested torque to an amount that is equal to or less than the first reference value; target air amount calculation means for back-calculating from the requested torque a target air amount for achieving the requested torque by using a parameter that provides a conversion efficiency of an air amount to torque; parameter value changing means for starting to change a value of the parameter in a direction that lowers the conversion efficiency in response to a decrease in the requested torque to a value that is equal to or less than the second reference value, and gradually changing the value of the parameter in a direction that lowers the conversion efficiency as the requested torque further decreases from the second reference value to the first reference value; first actuator control means for determining an operation amount of the first actuator based on the target air amount, and operating the first actuator in accordance with the operation amount; second actuator control means for determining a fuel supply amount based on the target air-fuel ratio, and operating the second actuator in accordance with the fuel supply amount; and third actuator control means for determining an ignition timing for achieving the requested torque based on the requested torque and a torque that is estimated based on the operation amount of the first actuator and the target air-fuel ratio, and operating the third actuator in accordance with the ignition timing. 2. The control device for an internal combustion engine according to claim 1 , wherein: the parameter is a parameter corresponding to an air-fuel ratio; and the parameter value changing means sets the value of the parameter to a value corresponding to the first air-fuel ratio in response to the requested torque being greater than the second reference value, starts to change the value of the parameter from the value corresponding to the first air-fuel ratio in response to a decrease in the requested torque to a value that is equal to or less than the second reference value, and gradually changes the value of the parameter from the value corresponding to the first air-fuel ratio to a value corresponding to the second air-fuel ratio as the requested torque decreases from the second reference value to the first reference value. 3. The control device for an internal combustion engine according to claim 1 , wherein: the parameter is a parameter corresponding to an ignition timing; and the parameter value changing means sets the value of the parameter to a value corresponding to an optimal ignition timing in response to the requested torque being greater than the second reference value, starts to change the value of the parameter from the value corresponding to the optimal ignition timing in response to a decrease in the requested torque to a value that is equal to or less than the second reference value, and in a period until the requested torque decreases from the second reference value to the first reference value, gradually changes the value of the parameter in accordance with a proportion of the requested torque relative to the second reference value. 4. The control device for an internal combustion engine according to claim 3 , wherein: the parameter is expressed as a coefficient by which the requested torque is divided; and the parameter value changing means sets the value of the parameter to 1 in response to the requested torque being greater than the second reference value, starts to decrease the value of the parameter from 1 in response to a decrease in the requested torque to a value that is equal to or less than the second reference value, and in a period until the requested torque decreases from the second reference value to the first reference value, calculates a proportion of the requested torque relative to the second reference value as the value of the parameter. 5. The control device for an internal combustion engine according to claim 1 , wherein: the reference value calculation means includes means for calculating a third reference value with respect to a torque based on the second air-fuel ratio and an air amount with which the first reference value can be achieved under the first air-fuel ratio; the target air-fuel ratio switching means includes means for setting the target air-fuel ratio to the second air-fuel ratio in response to the requested torque being less than the third reference value, and switching the target air-fuel ratio from the second air-fuel ratio to the first air-fuel ratio in response to an increase in the requested torque to a value that is equal to or greater than the third reference value; and the parameter value changing means includes means for starting to change the value of the parameter in a direction that raises the conversion efficiency in response to an increase in the requested torque to a value that is equal to or greater than the third reference value, and gradually changing the value of the parameter in a direction that raises the conversion efficiency as the requested torque further increases from the third reference value towards the first reference value. 6. The control device for an internal combustion engine according to claim 5 , wherein: the parameter is a parameter corresponding to an air-fuel ratio; and the parameter value changing means sets the value of the parameter to a value corresponding to the second air-fuel ratio in response to the requested torque being less than the third reference value, starts to change the value of the parameter from the value corresponding to the second air-fuel ratio in response to an increase in the requested torque to a value that is equal to or greater than the third reference value, and gradually changes the value of the parameter from the value corresponding to the second air-fuel ratio towards a value corresponding to the first air-fuel ratio as the requested torque increases further from the third reference value towards the first reference value. 7. The control device for an internal combustion engine according to claim 5 , wherein: the parameter is a parameter corresponding to an ignition timing; and the parameter value changing means sets the value of the parameter to a value corresponding to an optimal ignition timing in response to the requested torque being less than the third reference value, decreases the value of the parameter in a step manner to a value corresponding to an ignition timing that is retarded relative to the optimal ignition timing in response to an increase in

Assignees

Inventors

Classifications

  • Controlling intake air · CPC title

  • Details not otherwise provided for · CPC title

  • further comprising a homogeneous charge spark-ignited mode · CPC title

  • Control of spark intensity, intensifying, lengthening, suppression (by means of current control in the storage devices F02P3/05, F02P3/09, during starting F02P15/12) · CPC title

  • during a transition between engine operation modes or states · CPC title

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What does patent US9650979B2 cover?
A target air amount for achieving a requested torque is back-calculated from the requested torque using a parameter that provides a conversion efficiency of an air amount to torque. The value of the parameter gradually changes to lower the conversion efficiency as the requested torque decreases from a second reference value towards a first reference value. The first reference value is calculate…
Who is the assignee on this patent?
Tanaka Satoru, Yoshizaki Satoshi, Toyota Motor Co Ltd
What technology area does this patent fall under?
Primary CPC classification F02D41/3029. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue May 16 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 7 related publications on this page (citations in our corpus or others sharing the same primary CPC).