Inventor profile of:

David J. Stroh

City:

Columbus, Indiana

Country:

United States

Published Applications:

23

Last publication date:

2022-05-12

Top Assignees for applications by David J. Stroh

The entities that hold a legal rights for patent applications filed by inventor Stroh David J.:

Recent patent applications by Stroh David J.

David J. Stroh from Columbus, US has applied for patents for these inventions. The list has both pending applications and granted patents:

#1 | 2022-05-12
US20220145815A1
Mechanical engineering

Techniques for improving fuel economy in dedicated EGR engines

#2 | 2021-10-28
US20210332777A1
Mechanical engineering

Engine intake air system including CAC bypass and separate bypass heater, and high-efficiency spark-ignited direct injection liquid propane engine architectures including same

#3 | 2021-08-26
US20210262404A1
Mechanical engineering

Systems and methods for controlling EGR flow during transient conditions

#4 | 2021-04-15
US20210108580A1
Mechanical engineering

Engine intake air system including CAC bypass and separate bypass heater, and high-efficiency spark-ignited direct injection liquid propane engine architectures including same

#5 | 2020-10-08
US20200318564A1
Mechanical engineering

Techniques for improving fuel economy in dedicated EGR engines

#6 | 2020-05-21
US20200156613A1
Performing operations; transporting

Systems and methods for engine brake diagnostics and control

#7 | 2020-04-16
US20200116100A1
Mechanical engineering

ARBITRATION STRATEGY FOR SLOW RESPONSE AND FAST RESPONSE TORQUE REQUESTS

#8 | 2020-04-02
US20200102900A1
Mechanical engineering

Engine control based on combustion misfire of exhaust gas recirculation cylinder

#9 | 2020-03-05
US20200072142A1
Mechanical engineering

Spark plug configurations for dedicated-EGR engines

#10 | 2020-01-16
US20200018244A1
Mechanical engineering

Vacuum and compression release braking in spark-ignited engines

#11 | 2019-08-15
US20190249613A1
Mechanical engineering

Systems and methods for controlling EGR flow during transient conditions

#12 | 2019-03-14
US20190078522A1
Mechanical engineering

DEDICATED EXHAUST GAS RECIRCULATING (EGR) SYSTEM

#13 | 2019-02-07
US20190040809A1
Mechanical engineering

Regeneration of gasoline particulate filters

#14 | 2018-09-27
US20180274463A1
Mechanical engineering

FAST TORQUE CONTROL WITH ELECTRIC ACCESSORIES

#15 | 2017-05-25
US20170145935A1
Mechanical engineering

Systems and methods to reduce torsional conditions in an internal combustion engine

#16 | 2016-08-18
US20160237928A1
Mechanical engineering

Systems and methods for controlling EGR flow during transient conditions

#17 | 2016-06-16
US20160169186A1
Mechanical engineering

Method of spark timing adjustment for an internal combustion engine

#18 | 2015-09-10
US20150252742A1
Mechanical engineering

Systems and methods to reduce torsional conditions in an internal combustion engine

#19 | 2015-06-25
US20150176513A1
Mechanical engineering

Control of internal combustion engines in response to exhaust gas recirculation system conditions

#20 | 2013-12-05
US20130319369A1
Mechanical engineering

Arbitration strategy for slow response and fast response torque requests

#21 | 2009-06-25
US20090158715A1
Mechanical engineering

Regeneration system and method for exhaust aftertreatment devices

#22 | 2009-01-22
US20090024263A1
Performing operations; transporting

Association of torque requesting modules in a coordinated torque architecture

#23 | 2009-01-01
US20090000274A1
Mechanical engineering

Control oriented model for LNT regeneration

InventorID:

552516 ⎘