This paper introduces the generic representation and construction methods for the architectures of the four-wheel-drive hybrid electric vehicle (HEV) powertrain, which achieve the unified rules to represent and construct all types of HEV powertrains. To map the architecture into numerical variables and add it into optimization, the kinematic matrix of the HEV powertrain is extracted corresponding to the topological structure. Based on the torque distribution requirement of four-wheel-drive HEV, the initial design schemes (architecture and parameters) are created by charge-under-go feasibility inspection.
Zhou, X., Qin, D., Rotella, D., Cammalleri, M. (2019). Hybrid electric vehicle powertrain design: Construction of topologies and initial design schemes. In G. Carbone, A. Gasparetto (a cura di), Advances in Italian Mechanism Science Proceedings of the Second International Conference of IFToMM Italy (pp. 49-60). Springer Netherlands [10.1007/978-3-030-03320-0_6].
Hybrid electric vehicle powertrain design: Construction of topologies and initial design schemes
Rotella, Dario;Cammalleri, Marco
2019-01-01
Abstract
This paper introduces the generic representation and construction methods for the architectures of the four-wheel-drive hybrid electric vehicle (HEV) powertrain, which achieve the unified rules to represent and construct all types of HEV powertrains. To map the architecture into numerical variables and add it into optimization, the kinematic matrix of the HEV powertrain is extracted corresponding to the topological structure. Based on the torque distribution requirement of four-wheel-drive HEV, the initial design schemes (architecture and parameters) are created by charge-under-go feasibility inspection.File | Dimensione | Formato | |
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