Design and optimisation of single motor electric powertrains considering different transmission topologies

Mechanism and Machine Theory - Tập 168 - Trang 104578 - 2022
B. Krüger1,2, G. Keinprecht1, G. Filomeno1,2, D. Dennin1, P. Tenberge2
1BMW Group, Knorrstraße 147, 80937 Munich, Germany
2Ruhr University Bochum, Universitätsstraße 150, 44801 Bochum, Germany

Tài liệu tham khảo

Paris Agreement, United Nations Framework Convention on Climate Change XXVII 7.d. 2019 Ehsani, 2003, Characterization of electric motor drives for traction applications, 891 Zhu, 2017, Quantitative comparison of electromagnetic performance of electrical machines for HEVs/EVs, CES Trans. Electr. Mach. Syst., 1, 37, 10.23919/TEMS.2017.7911107 El-Refaie, 2013, Motors/generators for traction/propulsion applications: A review, IEEE Veh. Technol. Mag., 8, 90, 10.1109/MVT.2012.2218438 Kalt, 2019, Impact of electric machine design parameters and loss types on driving cycle efficiency, 6 Popescu, 2018, Electrical vehicles—Practical solutions for power Traction motor systems, IEEE Trans. Ind. Appl., 54, 2751, 10.1109/TIA.2018.2792459 Knischourek, 2012, Power losses reduction in an electric traction drive at partial load operation, 1 Cupertino, 2018, Design procedure for high-speed PM motors aided by optimization algorithms, Machines, 6, 5, 10.3390/machines6010005 Papini, 2018, Electromagnetic design of an interior permanent magnet motor for vehicle traction, 205 Lu, 2016, Two design procedures for PM synchronous machines for electric powertrains, IEEE Trans. Transp. Electr., 3, 98, 10.1109/TTE.2016.2646738 Walker, 2013, Modelling, simulations, and optimisation of electric vehicles for analysis of transmission ratio selection, Adv. Mech. Eng., 5, 10.1155/2013/340435 Walker, 2015 Ruan, 2018, Development of continuously variable transmission and multi-speed dual-clutch transmission for pure electric vehicle, Adv. Mech. Eng., 10, 10.1177/1687814018758223 Van der Sluis, 2019 Di Nicola, 2012, Optimization of a multiple-speed transmission for downsizing the motor of a fully electric vehicle, SAE Int. J. Altern. Powertrains, 1, 134, 10.4271/2012-01-0630 Morozov, 2019 Verbruggen, 2020, Electric powertrain topology analysis and design for heavy-duty trucks, Energies, 13, 2434, 10.3390/en13102434 Hofman, 2020, Transmission ratio design for electric vehicles via analytical modeling and optimization, 1 Anselma, 2019, Comparing battery electric vehicle powertrains through rapid component sizing, Int. J. Electr. Hybrid Veh., 11, 36, 10.1504/IJEHV.2019.098718 Wolff, 2021, Influence of powertrain topology and electric machine design on efficiency of battery electric trucks–A simulative case-study, Energies, 14, 328, 10.3390/en14020328 Li, 2020, Parameters optimization of two-speed powertrain of electric vehicle based on genetic algorithm, Adv. Mech. Eng., 12, 10.1177/1687814020901652 Schönknecht, 2016, Electric powertrain system design of BEV and HEV applying a multi objective optimization methodology, Transp. Res. Procedia, 14, 3611, 10.1016/j.trpro.2016.05.429 Kwon, 2020, Multi-objective optimization of powertrain components for electric vehicles using a two-stage analysis model, Int. J. Automot. Technol., 21, 1495, 10.1007/s12239-020-0141-5 Kalt, 2020, Electric machine design tool for permanent magnet synchronous machines and induction machines, Machines, 8, 15, 10.3390/machines8010015 Bierhoff, 2004, Semiconductor losses in voltage source and current source IGBT converters based on analytical derivation, 2836 Gaertner, 2013, The ZF automatic transmission 9HP48 transmission system, design and mechanical parts, SAE Int. J. Passeng. Cars-Mech. Syst., 6, 908, 10.4271/2013-01-1276 Casper, 2020, The high-efficiency fully electric drivetrain of the New Porsche Taycan Rizzoni, 1999, Unified modeling of hybrid electric vehicle drivetrains, IEEE/ASME Trans. Mechatronics, 4, 246, 10.1109/3516.789683 Wimmer, 2005 Müller, 1971 Chen, 2007, Virtual-power flow and mechanical Gear-Mesh power losses of epicyclic gear trains, J. Mech. Des., 107, 10.1115/1.2359473 Novak, 2010 A. Kinigadner, C. Lauinger, M. Vornehm, Dedicated hybrid transmissions - how the transmission becomes a powertrain, in: 11th Schaeffler Symposium, Baden-Baden, 2018. B. Müller, M. Grethel, M. Göckler, Innovative power-on-demand concepts for transmission actuation, in: 11th Schaeffler Symposium, Baden-Baden, 2018. Förster, 2013 Wirth, 2012 Hoppert, 2015 Allendorf, 2016, Simulation of the idle losses of a planetary gear, MTZ Worldw., 77, 68, 10.1007/s38313-016-0128-9 Moskalik, 2016, Investigating the effect of advanced automatic transmissions on fuel consumption using vehicle testing and modeling, SAE Int. J. Engines, 9, 1916, 10.4271/2016-01-1142 Grunditz, 2016, Performance analysis of current BEVs based on a comprehensive review of specifications, IEEE Trans. Transp. Electr., 2, 270, 10.1109/TTE.2016.2571783 Du, 2021, Optimization design and performance comparison of different powertrains of electric vehicles, Mech. Mach. Theory, 156, 10.1016/j.mechmachtheory.2020.104143