LAPSE:2023.28719
Published Article
LAPSE:2023.28719
Cooling System Energy Consumption Reduction through a Novel All-Electric Powertrain Traction Module and Control Optimization
April 12, 2023
Abstract
In this work, the problem of reducing the energy consumption of the cooling circuit for the propulsion system of an all-electric vehicle is approached with two different concepts: improvement of the powertrain efficiency and optimization of the control strategy. Improvement of the powertrain efficiency is obtained through a modular design, which consists of replacing the electric powertrain with several smaller traction modules whose powers sum up to the total power of the original powertrain. In this paper, it is shown how modularity, among other benefits, also allows reducing the energy consumption of the cooling system up to 54%. The energy consumption of the cooling system is associated with two components: the pump and the fan. They produce a so-called auxiliary load on the battery, reducing the maximum range of the vehicle. In conventional cooling systems, the pump and the fan are controlled with a thermostat, without taking into account the energy consumption. Conversely, in this work a control strategy to reduce the auxiliary loads is developed and compared with the conventional approach, showing that the energy consumption of the cooling system can be reduced up to 27%. To test the control strategy, numerical simulations have been carried out with a 1-D model of the cooling system. On the other hand, all the thermal loads of the components have been calculated with a vehicle simulator, which is able to predict the vehicle’s behavior under different driving cycles.
Keywords
control optimization, electric vehicle, modularity, propulsion cooling system, thermal management
Suggested Citation
Lombardi S, Villani M, Chiappini D, Tribioli L. Cooling System Energy Consumption Reduction through a Novel All-Electric Powertrain Traction Module and Control Optimization. (2023). LAPSE:2023.28719
Author Affiliations
Lombardi S: Department of Industrial Engineering, University of Rome Niccolò Cusano, Via Don Carlo Gnocchi, 3, 00195 Rome, Italy [ORCID]
Villani M: Department of Industrial Engineering, University of Rome Niccolò Cusano, Via Don Carlo Gnocchi, 3, 00195 Rome, Italy [ORCID]
Chiappini D: Department of Industrial Engineering, University of Rome Niccolò Cusano, Via Don Carlo Gnocchi, 3, 00195 Rome, Italy [ORCID]
Tribioli L: Department of Industrial Engineering, University of Rome Niccolò Cusano, Via Don Carlo Gnocchi, 3, 00195 Rome, Italy [ORCID]
Journal Name
Energies
Volume
14
Issue
1
Article Number
E33
Year
2020
Publication Date
2020-12-23
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en14010033, Publication Type: Journal Article
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LAPSE:2023.28719
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https://doi.org/10.3390/en14010033
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Apr 12, 2023
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