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Dynamic Feedforward Control of a Diesel Engine Based on Optimal Transient Compensation Maps

handle: 11585/463569
To satisfy the increasingly stringent emission regulations and a demand for an ever lower fuel consumption, diesel engines have become complex systems with many interacting actuators. As a consequence, these requirements are pushing control and calibration to their limits. The calibration procedure nowadays is still based mainly on engineering experience, which results in a highly iterative process to derive a complete engine calibration. Moreover, automatic tools are available only for stationary operation, to obtain control maps that are optimal with respect to some predefined objective function. Therefore, the exploitation of any leftover potential during transient operation is crucial. This paper proposes an approach to derive a transient feedforward (FF) control system in an automated way. It relies on optimal control theory to solve a dynamic optimization problem for fast transients. A partially physics-based model is thereby used to replace the engine. From the optimal solutions, the relevant information is extracted and stored in maps spanned by the engine speed and the torque gradient. These maps complement the static control maps by accounting for the dynamic behavior of the engine. The procedure is implemented on a real engine and experimental results are presented along with the development of the methodology.
- Alma Mater Studiorum University of Bologna Italy
- ETH Zurich Switzerland
- Institute for Dynamic Systems and Control Switzerland
Diesel engine, Technology, Transient operation, feedforward (FF) control, optimal control, Diesel engine; Transient operation; Feedforward (FF) control; Dynamic optimization; Optimal control, dynamic optimization, T, transient operation, diesel engine; transient operation; feedforward (FF) control; dynamic optimization; optimal control, Optimal control, Dynamic optimization, DIESEL ENGINE; TRANSIENT OPERATION; FEEDFORWARD CONTROL; DYNAMIC OPTIMIZATION; OPTIMAL CONTROL, Feedforward (FF) control, diesel engine, jel: jel:Q40, jel: jel:Q, jel: jel:Q43, jel: jel:Q42, jel: jel:Q41, jel: jel:Q48, jel: jel:Q47, jel: jel:Q49, jel: jel:Q0, jel: jel:Q4
Diesel engine, Technology, Transient operation, feedforward (FF) control, optimal control, Diesel engine; Transient operation; Feedforward (FF) control; Dynamic optimization; Optimal control, dynamic optimization, T, transient operation, diesel engine; transient operation; feedforward (FF) control; dynamic optimization; optimal control, Optimal control, Dynamic optimization, DIESEL ENGINE; TRANSIENT OPERATION; FEEDFORWARD CONTROL; DYNAMIC OPTIMIZATION; OPTIMAL CONTROL, Feedforward (FF) control, diesel engine, jel: jel:Q40, jel: jel:Q, jel: jel:Q43, jel: jel:Q42, jel: jel:Q41, jel: jel:Q48, jel: jel:Q47, jel: jel:Q49, jel: jel:Q0, jel: jel:Q4
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).11 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Top 10% influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Top 10% impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Average
