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Assessment and design of real world driving cycles targeted to the calibration of vehicles with electrified powertrain

Academic Article
Publication Date:
2021
abstract:
Vehicles' powertrain electrification is one of the key measures adopted by manufacturers in order to develop low emissions vehicles and reduce the CO emissions from passenger cars. High complexity of electrified powertrains increases the demand of cost-effective tools that can be used during the design of such powertrain architectures. Objective of the study is the proposal of a series of real-world velocity profiles that can be used during virtual design. To that aim, using three state of the art plug-in hybrid vehicles, a combined experimental, and simulation approach is followed to derive generic real-world cycles that can be used for the evaluation of the overall energy efficiency of electrified powertrains. The vehicles were tested under standard real driving emissions routes, real-world routes with reversed order (compared to a standard real driving emissions route) of urban, rural, motorway, and routes with high slope variation. To enhance the experimental activities, additional virtual mission profiles simulated using vehicle simulation models. Outcome of the study consists of specific driving cycles, designed based on standard real-world route, and a methodology for real-world data analysis and evaluation, along with the results from the assessment of the impact of different operational parameters on the total electrified powertrain.
Iris type:
01.01 Articolo in rivista
Keywords:
Real-world testing; plug-in hybrid vehicle; representative cycles; CO2 and pollutant emissions; energy and fuel consumption
List of contributors:
Prati, MARIA VITTORIA; Beatrice, Carlo
Authors of the University:
BEATRICE CARLO
Handle:
https://iris.cnr.it/handle/20.500.14243/401059
Published in:
INTERNATIONAL JOURNAL OF ENGINE RESEARCH
Journal
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URL

https://journals.sagepub.com/doi/10.1177/14680874211038729
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