Combustion control is key for achieving maximum efficiency in internal combustion engines. For SI (spark-ignition) engines, knocking combustions occurrence can be controlled using a protective closed-loop control system, but additional information, such as combustion angular phase, is needed to minimize brake-specific fuel consumption in the entire engine operating range. The proposed solution is a closed-loop Spark Advance (SA) controller based on pre-defined combustion phase targets, able to react to excessive knocking levels. Pressure- and ion-current-based combustion closed-loop control are compared in the article, by implementing both solutions in Model-In-the-Loop environment and then in real time. Both controllers are characterized b...
Knock is an undesired phenomenon occurring in spark ignited engines and is controlled acting on the ...
Closed-loop electronic control is a proven and efficient way to optimize spark ignition engine perfo...
Homogeneous charge compression ignition (HCCI), combustion has the potential to be highly efficient ...
Combustion control is key for achieving maximum efficiency in internal combustion engines. For SI (s...
The paper presents the main results of a research activity focused on the analysis, development, and...
The paper presents the main results of a research activity focused on the analysis, development, and...
none8noThis work is focused on the development and validation of a spark advance controller, based o...
This work is focused on the development and validation of a spark advance controller, based on a pis...
The performance optimization of modern Spark Ignition engines is limited by knock occurrence: heavil...
In-cylinder ion sensing is a subject of interest due to its application in spark-ignited (SI) engine...
In order to reduce fuel cost and CO2 emissions, modern spark ignition (SI) engines need to lower as ...
Homogenous Charge Compression Ignition (HCCI) combustion phasing and stability provides a challengin...
tion (HCCI) combustion concept lacks direct ignition timing control, instead the auto ignition depen...
Closed-loop electronic control is a proven and efficient way to optimize spark ignition engine perfo...
Engine performance and efficiency are largely influenced by combustion phasing. Operating conditions...
Knock is an undesired phenomenon occurring in spark ignited engines and is controlled acting on the ...
Closed-loop electronic control is a proven and efficient way to optimize spark ignition engine perfo...
Homogeneous charge compression ignition (HCCI), combustion has the potential to be highly efficient ...
Combustion control is key for achieving maximum efficiency in internal combustion engines. For SI (s...
The paper presents the main results of a research activity focused on the analysis, development, and...
The paper presents the main results of a research activity focused on the analysis, development, and...
none8noThis work is focused on the development and validation of a spark advance controller, based o...
This work is focused on the development and validation of a spark advance controller, based on a pis...
The performance optimization of modern Spark Ignition engines is limited by knock occurrence: heavil...
In-cylinder ion sensing is a subject of interest due to its application in spark-ignited (SI) engine...
In order to reduce fuel cost and CO2 emissions, modern spark ignition (SI) engines need to lower as ...
Homogenous Charge Compression Ignition (HCCI) combustion phasing and stability provides a challengin...
tion (HCCI) combustion concept lacks direct ignition timing control, instead the auto ignition depen...
Closed-loop electronic control is a proven and efficient way to optimize spark ignition engine perfo...
Engine performance and efficiency are largely influenced by combustion phasing. Operating conditions...
Knock is an undesired phenomenon occurring in spark ignited engines and is controlled acting on the ...
Closed-loop electronic control is a proven and efficient way to optimize spark ignition engine perfo...
Homogeneous charge compression ignition (HCCI), combustion has the potential to be highly efficient ...