IP Library Granted Patent US 10,767,588
Granted Patent B2
US 10,767,588 · App. 16/120,688 · Granted Sep 8, 2020

Control apparatus for engine

Inventors: Ryosuke Itano (Tokyo, JP); Toshiyuki Miyata (Tokyo, JP); Hitoshi Toda (Tokyo, JP)
Assignee: MITSUBISHI JIDOSHA KOGYO KABUSHIKI KAISHA
F02D41/182F02B25/145F02D13/0234F02D13/0238F02D13/0261F02D41/0007F02D41/345F02D2041/001F02D2200/04F02D2200/0411
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,767,588
App. No.
16/120,688
Granted
Sep 8, 2020
Kind
B2
Abstract

The control apparatus for an engine includes: a first controller that sets a valve-opening timing of an intake valve of the engine in response to an amount of intake air; and a second controller that sets an injection start time of a fuel injector of the engine in response to the amount of intake air. In a case where the amount of intake air is within a first range being equal to or more than a predetermined value, the first controller advances the valve-opening timing as compared with a case where the amount of intake air is equal to the predetermined value, and the second controller delays the injection start time as compared with a case where the amount of intake air is within a second range being less than the predetermined value.

Claims (49)

1. A control apparatus for an engine, the engine comprising a fuel injector that injects fuel into an intake port, a variable valve mechanism that changes opening/closing timings of at least an intake valve, and a first detector that detects an amount of intake air flowing through an intake passage of the engine, the control apparatus comprising:

a first controller that sets a valve-opening timing of the intake valve in response to the amount of intake air; and

a second controller that sets an injection start time of the fuel injector in response to the amount of intake air, wherein:

in a case where the amount of intake air is within a first range being greater than a predetermined value, the first controller advances the valve-opening timing as compared with a case where the amount of intake air is equal to the predetermined value; and

in the case where the amount of intake air is within the first range, the second controller delays the injection start time as compared with a case where the amount of intake air is within a second range being less than the predetermined value, and wherein

the first controller advances the valve-opening timing as the amount of intake air increases within the first range; and

the second controller continuously increases the delay of the injection start time as the amount of intake air increases within the first range.

2. The control apparatus according to claim 1 , wherein

the engine includes a turbocharger, and

the first range covers a range of the amount of intake air being in a condition where supercharging pressure is equal to or higher than atmospheric pressure.

3. The control apparatus according to claim 1 , wherein

the engine includes a second detector that detects atmospheric pressure, and

the control apparatus further comprising:

a first calculator that calculates charging efficiency based on the amount of intake air; and

a second calculator that calculates volumetric efficiency based on the amount of intake air and the atmospheric pressure, wherein

the second controller calculates the injection start times based on the charging efficiency and the volumetric efficiency, respectively, and when the injection start times calculated by the second controller differ from each other, sets more delayed one as the injection start time.

4. The control apparatus according to claim 2 , wherein the engine includes a second detector that detects atmospheric pressure,

the control apparatus further comprising:

a first calculator that calculates charging efficiency based on the amount of intake air; and

a second calculator that calculates volumetric efficiency based on the amount of intake air and the atmospheric pressure, wherein

the second controller calculates the injection start times based on the charging efficiency and the volumetric efficiency, respectively, and when the injection start times calculated by the second controller differ from each other, sets more delayed one as the injection start time.

5. The control apparatus according to claim 1 , wherein the first controller continuously increases delay of the valve-opening timing as the amount of intake air increases toward the predetermined value, at which the second range switches from the second range to the first range, within the second range.

6. The control apparatus according to claim 2 , wherein the first controller continuously increases delay of the valve-opening timing as the amount of intake air increases toward a predetermined value, at which the second range switches from the second range to the first range, within the second range.

7. The control apparatus according to claim 3 , wherein the first controller continuously increases delay of the valve-opening timing as the amount of intake air increases toward a predetermined value, at which the second range switches from the second range to the first range, within the second range.

8. The control apparatus according to claim 4 , wherein the first controller continuously increases delay of the valve-opening timing as the amount of intake air increases toward a predetermined value, at which the second range switches from the second range to the first range, within the second range.

9. A control apparatus for an engine, the engine comprising a fuel injector that injects fuel into an intake port, a variable valve mechanism that changes opening/closing timings of at least an intake valve, and a first detecting means that detects an amount of intake air flowing through an intake passage of the engine, the control apparatus comprising:

a first control means that sets a valve-opening timing of the intake valve in response to the amount of intake air; and

a second control means that sets an injection start time of the fuel injector in response to the amount of intake air, wherein:

in a case where the amount of intake air is within a first range being greater than a predetermined value, the first control means advances the valve-opening timing as compared with a case where the amount of intake air is equal to the predetermined value; and

in the case where the amount of intake air is within the first range, the second control means delays the injection start time as compared with a case where the amount of intake air is within a second range being less than the predetermined value, and wherein

the first control means advances the valve-opening timing as the amount of intake air increases within the first range; and

the second controller continuously increases the delay of the injection start time as the amount of intake air increases within the first range.

10. A control apparatus for an engine, the engine comprising a fuel injector that injects fuel into an intake port, a variable valve mechanism that changes opening/closing timings of at least an intake valve, and a first detector that detects an amount of intake air flowing through an intake passage of the engine, the control apparatus comprising:

a first controller that sets a valve-opening timing of the intake valve in response to the amount of intake air; and

a second controller that sets an injection start time of the fuel injector in response to the amount of intake air, wherein:

in a case where the amount of intake air is within a first range being greater than a predetermined value, the first controller advances the valve-opening timing as compared with a case where the amount of intake air is equal to the predetermined value; and

in the case where the amount of intake air is within the first range, the second controller delays the injection start time as compared with a case where the amount of intake air is within a second range being less than the predetermined value, and wherein

the engine includes a second detector that detects atmospheric pressure, and

the control apparatus further comprising:

a first calculator that calculates charging efficiency based on the amount of intake air; and

a second calculator that calculates volumetric efficiency based on the amount of intake air and the atmospheric pressure, wherein

the second controller calculates the injection start times based on the charging efficiency and the volumetric efficiency, respectively, and when the injection start times calculated by the second controller differ from each other, sets more delayed one as the injection start time.

11. The control apparatus according to claim 10 , wherein:

the first controller advances the valve-opening timing as the amount of intake air increases within the first range; and

the second controller delays the injection start time as the amount of intake air increases within the first range.

12. The control apparatus according to claim 10 , wherein

the engine includes a turbocharger, and

the first range covers a range of the amount of intake air being in a condition where supercharging pressure is equal to or higher than atmospheric pressure.

13. The control apparatus according to claim 10 , wherein the first controller continuously delays the valve-opening timing as the amount of intake air increases toward a predetermined intake air amount, at which the second range switches from the second range to the first range, within the second range.

Assignments (2)
CHANGE OF ADDRESS Recorded Mar 1, 2021
From: MITSUBISHI JIDOSHA KOGYO KABUSHIKI KAISHA
To: MITSUBISHI JIDOSHA KOGYO KABUSHIKI KAISHA
Reel/Frame 055472/0944 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2018
From: ITANO, RYOSUKE; MIYATA, TOSHIYUKI; TODA, HITOSHI
To: MITSUBISHI JIDOSHA KOGYO KABUSHIKI KAISHA
Reel/Frame 047125/0553 →
Priority Claims (1)
JP 2017-183475 · Sep 25, 2017 · national
Continuity (1)
Related Publication 20190093585A1 · Mar 28, 2019