IP Library Granted Patent US 9,605,600
Granted Patent B2
US 9,605,600 · App. 14/358,698 · Granted Mar 28, 2017

Method for shutting off and activating a cylinder of an internal combustion engine

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Quick Facts
Patent No.
US 9,605,600
App. No.
14/358,698
Granted
Mar 28, 2017
Kind
B2
Abstract

A control device and a method for shutting off and/or activating a cylinder of an internal combustion engine that has a plurality of cylinders is implemented in a substantially torque-neutral manner and substantially without increase in fuel consumption. The technique may be performed without requiring ignition retardation.

Claims (38)

1. A method for the deactivation of a cylinder of an internal combustion engine having multiple cylinders, each having an induction region and an inlet valve, the method comprising:

for preparation for a deactivation of a cylinder, raising a pressure in the induction regions of the cylinders to a higher target pressure corresponding to a pressure intended to prevail in the induction region after the deactivation of the cylinder in order to compress a desired air mass for outputting a desired torque,

during the raising of the pressure in the induction region, adjusting opening times of the inlet valves of the cylinders such that the desired air mass corresponding to the desired torque is inducted into the cylinders and compressed,

deactivating a cylinder after the target pressure is attained, and

after deactivating the cylinder, adjusting the opening times of the inlet valves of the other cylinders such that the desired torque is output,

wherein the opening times of the inlet valves are adjusted by means of an electromagnetic valve drive or a camshaft actuated hydraulic valve drive.

2. The method of claim 1 , wherein:

during a notional induction phase of the deactivated cylinder, the opening times of the inlet valves of the active cylinders are adjusted such that an air quantity required for outputting the desired torque is induced and compressed.

3. The method of claim 1 , comprising varying closing times of the inlet values in order to fix the opening times of the inlet valves.

4. The method of claim 2 , comprising retarding closing of the inlet valves while the induction pipe pressure is raised to the target pressure.

5. The method of claim 2 , comprising adjusting the timing of the inlet valves during the notional induction phase of the deactivated cylinder to a more advanced normal timing.

6. The method of claim 1 , comprising, after the deactivation of the cylinder, compressing an increased air mass in the cylinders, with the torque being kept the same.

7. A method for the activation of a deactivated cylinder of an internal combustion engine having multiple cylinders including the deactivated cylinder and a plurality of active cylinders, each of the multiple cylinders having an induction region and an inlet valve, the method comprising:

for preparation for an activation of the deactivated cylinder, lowering a pressure in the induction region of the cylinders to a lower target pressure corresponding to a pressure intended to prevail in the induction region after the activation of the cylinder in order to induct and compress a desired air mass for outputting a desired torque,

during the lowering of the pressure and at a time when a notional induction stroke of the deactivated cylinder begins, adjusting opening times of the inlet valves of the active cylinders such that the air mass corresponding to the desired torque is compressed in the cylinders,

before the activation of the deactivated cylinder, adjusting the opening times of the inlet valves of the active cylinders such that the desired torque is output, and

activating the deactivated cylinder after the target pressure is attained.

8. The method of claim 7 , wherein:

the inlet valves are actuated by an adjustable camshaft,

the opening times of the inlet valves are adjusted by an adjustment of a camshaft, and

before the activation of the deactivated cylinder, the position of the camshaft is adapted such that the opening times of the inlet valves of the active cylinders are adjusted such that an air quantity required for outputting the desired torque is induced and compressed.

9. The method of claim 7 , comprising varying closing times of the inlet values of the active cylinders in order to fix the opening times of the inlet valves of the active cylinders.

10. The method of claim 8 , comprising adjusting the camshaft from a normal position in a direction of retarded closing of the inlet valves and subsequently back in a direction of the normal position while the induction pipe pressure is lowered to the target pressure, in order to maintain the compressed air mass corresponding to the desired torque despite the change in pressure in the induction region.

11. The method of claim 7 , comprising, after the activation of the deactivated cylinder, compressing a reduced air mass in the cylinders with the torque being kept the same.

12. A control unit for the deactivation of a cylinder of an internal combustion engine having multiple cylinders, each having an induction region and an inlet valve, the control unit comprising:

a processor; and

computer instructions stored in non-transitory computer-readable medium and executable by the processor to:

for preparation for a deactivation of a cylinder, increasing a pressure in the induction regions of the cylinders to a higher target pressure corresponding to a pressure intended to prevail in the induction region after the deactivation of the cylinder in order to compress a desired air mass for outputting a desired torque,

during the increasing of the pressure in the induction region, adjust opening times of the inlet valves of the cylinders such that the desired air mass corresponding to the desired torque is inducted into the cylinders and compressed,

deactivate a cylinder after the target pressure is reached, and

after deactivating the cylinder, adjust the opening times of the inlet valves of the other cylinders such that the desired torque is output

wherein the opening times of the inlet valves are adjusted by means of an electromagnetic valve drive or a camshaft actuated hydraulic valve drive.

13. The control unit of claim 12 , wherein:

the computer instructions are further executable to, during a notional induction phase of the deactivated cylinder, adjust the opening times of the inlet valves of the active cylinders such that an air quantity required for outputting the desired torque is inducted and compressed.

14. The control unit of claim 13 , wherein the computer instructions are executable to retard closing of the inlet valves while the induction pipe pressure is raised to the target pressure.

15. The control unit of claim 13 , wherein the computer instructions are executable to adjust the closing of the inlet valves a retarded closing position during the notional induction phase of the deactivated cylinder in a direction of a more advanced normal position.

16. The control unit of claim 12 , wherein the computer instructions are executable to vary closing times of the inlet values in order to fix the opening times of the inlet valves.

17. The control unit of claim 12 , wherein the computer instructions are executable to, after the deactivation of the cylinder, cause the compression of an increased air mass in the cylinders, with the torque being kept the same.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2020
From: CONTINENTAL AUTOMOTIVE GMBH
To: VITESCO TECHNOLOGIES GMBH
Reel/Frame 053302/0633 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2014
From: ZHANG, HONG, DR.
To: CONTINENTAL AUTOMOTIVE GMBH
Reel/Frame 033192/0978 →