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Dive into the research topics where Paul A. Pietrzyk is active.

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Featured researches published by Paul A. Pietrzyk.


SAE Technical Paper Series | 2018

Improving Transient Torque Response for Boosted Engines with VCT and EGR

Erik Hellstrom; Mrdjan J. Jankovic; Michael Howard Shelby; Paul A. Pietrzyk; Adam J. Richards; John Eric Rollinger

Modern gasoline engines have increased part-load fuel economy and specific power output through technologies such as downsizing, turbocharging, direct injection, and exhaust gas recirculation. These engines tend to have higher sensitivity to driving behavior because of the steady-state efficiency versus output characteristics (e.g., sweet spot at lower output) and the dynamic response characteristics (e.g., turbo lag). It has been observed that the technologies aimed at increased engine efficiency may improve fuel economy for less aggressive cycles and drivers while hurting fuel economy for more aggressive cycles and drivers. The higher degrees of freedom in these engines and the increased sensitivity make controls and calibration more complex and more important at the same time. With the interactions between the dynamic response characteristics of the powertrain and the driver in mind, a dynamic control strategy for variable cam timing (VCT) and exhaust gas recirculation (EGR) is developed. The strategy allows actuator positions at steady-state optimal values when possible yet a fast response proportional to the driver request in transients. The aim is to strike a balance, which is tunable, between steady state efficiency and transient response. Most of the calibration process is algorithmic and based on standard engine mapping data. Experimental results for fuel economy on drive cycles and performance testing from powertrain and chassis dynamometers for two powertrain configurations are reported. Analysis shows improvements in terms of fuel economy and driver demand tracking on drive cycles as well as improved performance metrics. In particular, it is demonstrated that it is possible to simultaneously improve transient performance and fuel economy.


Archive | 2006

METHOD AND SYSTEM FOR TRANSIENT AIRFLOW COMPENSATION IN AN INTERNAL COMBUSTION ENGINE

John Eric Rollinger; Paul A. Pietrzyk; Karen Willard; Michael John Cullen; Rob Ciarrocchi; Jeff Doering


Archive | 2005

Electronic throttle control supercharging

John Eric Rollinger; Karen Willard; Paul A. Pietrzyk; Michael John Cullen


Archive | 2006

SYSTEM AND METHOD FOR DEMONSTRATING FUNCTIONALITY OF ON-BOARD DIAGNOSTICS FOR VEHICLES

John Eric Rollinger; Paul A. Pietrzyk; John Smiley; Duncan Borthwick; Gregory Sapick; Marian Sue Chupa; John Harris; Robert Michael Grant


Archive | 2004

Method and system for detecting an absolute pressure sensor malfunction

Songping Yu; Paul A. Pietrzyk; Gary Lee Danhoff


Archive | 2004

Secondary airflow system for engine exhaust emission diagnostics

Brent Edward Sealy; Jeff Doering; Michael John Cullen; David Wright; Paul A. Pietrzyk


Archive | 2003

Air estimation approach for internal combustion engine control

Michael John Cullen; Giuseppe D. Suffredini; Paul A. Pietrzyk; Jeffrey Allen Doering; Aaron Schweizerhof; Mrdjan J. Jankovic


Archive | 2016

METHOD AND SYSTEM FOR VARIABLE CAM TIMING DEVICE

Paul A. Pietrzyk; John Eric Rollinger; Ed Badillo


Archive | 2015

A method and system for variable cam timing device for

John Eric Rollinger; Paul A. Pietrzyk; Ed Badillo


Archive | 2015

Verfahren und System für die Vorzündungssteuerung

Chris Paul Glugla; Robert Sarow Baskins; James Matthew Kindree; Paul A. Pietrzyk; Mark Paul Guerrier; Rama Sanghvi

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