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  1. Research Outputs

Feasibility Study on MHEV Application for Motorbikes: Components Sizing, Strategy Optimization through Dynamic Programming and Analysis of Possible Benefits

Academic Article
Publication Date:
2024
Short description:
Feasibility Study on MHEV Application for Motorbikes: Components Sizing, Strategy Optimization through Dynamic Programming and Analysis of Possible Benefits / Mangeruga, V.; Cusati, D.; Raimondi, F.; Giacopini, M.. - In: VEHICLES. - ISSN 2624-8921. - 6:3(2024), pp. 1442-1467. [10.3390/vehicles6030068]
abstract:
Reducing CO2 emissions is becoming a particularly important goal for motorcycle manufacturers. A fully electric transition still seems far away, given the difficulties in creating an electric motorcycle with an acceptable range and mass. This opens up opportunities for the application of hybrid powertrains in motorcycles. Managing mass, cost, and volume is a challenging issue for motorcycles; therefore, an MHEV architecture represents an interesting opportunity, as it is a low-complexity and low-cost solution. Firstly, in this work, an adequate sizing of the powertrain components is studied for the maximum reduction in fuel consumption. This is performed by analyzing many different system configurations with different hybridization ratios. A 1D simulation of the motorcycle traveling along the homologation cycle (WMTC) is performed, and the powerunit use strategy is optimized for each configuration using the Dynamic Programming technique. The results are analyzed in order to highlight the impact of kinetic energy recovery and engine load-point shifting on fuel consumption reduction. The results show the applicability of MHEV technology to road motorcycles, thus providing a useful tool to analyze the cost/benefit ratio of this technology. The developed methodology is also suitable for different vehicles once a specific test cycle is known.
Iris type:
Articolo su rivista
Keywords:
CO; 2; reduction; dynamic programming; energy management; energy storage; homologation cycles; hybrid electric vehicles; mild-hybrid motorcycles
List of contributors:
Mangeruga, V.; Cusati, D.; Raimondi, F.; Giacopini, M.
Authors of the University:
GIACOPINI Matteo
MANGERUGA VALERIO
Handle:
https://iris.unimore.it/handle/11380/1372325
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1372325/741638/vehicles-06-00068-with-cover.pdf
Published in:
VEHICLES
Journal
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