Development of a Hybrid Electric Vehicle Simulation Tool with a Rule-Based Topology
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Abi, H. (2017). Global Electric and Hybrid Light Vehicles Market—Forecasts to 2031, QUBE by Just-Auto. [Q1 ed.].
Brauer, M., Danzer, C., Kratzsch, M., Leesch, M., Schneider, E., Sens, M., and Wukisiewitsch, W. (2020, January 22–24). Powertrain Concepts on the Path to CO2 Neutral Mobility. Proceedings of the 41st International Vienna Motor Symposium, Vienna, Austria.
(2021, November 24). Available online: http://data.europa.eu/eli/reg/2017/1151/oj.
Sens, M. (2019). Maßgeschneiderte Technologiepakete für Hybridantriebe Experten-Forum Powertrain. Ladungswechsel und Emissionierung/Reibung in Antrieb und Fahrzeug/Simulation und Test, ATZ Live.
Gao, 2007, Modeling and simulation of electric and hybrid vehicles, Proc. IEEE, 95, 729, 10.1109/JPROC.2006.890127
Miyazaki, 2016, Hybrid modeling of strategic loading of a marine hybrid power plant with experimental validation, IEEE Access, 4, 8793, 10.1109/ACCESS.2016.2629000
Lin, 2016, Control strategy for all the mode switches of hybrid electric vehicle, Adv. Mech. Eng., 8, 1687814016681233, 10.1177/1687814016681233
Yin, 2020, Fuzzy optimization of energy management for power split hybrid electric vehicle based on particle swarm optimization algorithm, Adv. Mech. Eng., 12, 1687814019830797
Chen, 2019, Development of energy control system for parallel hybrid power system using dynamic equations and fuzzy theory, Adv. Mech. Eng., 11, 1687814020966927
Zou, 2020, Modeling and energy management strategy research of a power split-hybrid electric vehicle, Adv. Mech. Eng., 12, 1687814020962624, 10.1177/1687814020962624
Brox, 2012, Model-based design methodology for rapid development of Fuzzy controllers on FPGAs, IEEE Trans. Ind. Inform., 9, 1362
Delprat, S., Paganelli, G., Guerra, T.M., Santin, J.J., Delhom, M., and Combes, E. (1999, January 12–16). Algorithmic optimization tool for the evaluation of HEV control strategies. Proceedings of the Electric Vehicle Symposium (EVS-16 by TIB), Beijing, China.
Brahma, A., Guezennec, Y., and Rizzoni, G. (2000, January 28–30). Optimal energy management in series hybrid vehicles. Proceedings of the 2000 American Control Conference, Chicago, IL, USA.
Rimaux, S., Delhom, M., and Combes, E. (1999, January 12–16). Hybrid vehicle powertrain: Modeling and control. Proceedings of the Electric Vehicle Symposium (EVS-16 by TIB), Beijing, China.
Chen, 2006, Accurate electrical battery model capable of predicting runtime and I-V performance, IEEE Trans. Energy Convers., 21, 504, 10.1109/TEC.2006.874229
Pesaran, 2002, Battery thermal models for hybrid vehicle simulation, J. Power Source, 110, 377, 10.1016/S0378-7753(02)00200-8
Bai, Y., and Wang, D. (2006). Fundamentals of Fuzzy logic control-Fuzzy sets, Fuzzy rules and defuzzifications. Advanced Fuzzy Logic Technologies in Industrial Applications, Springer.
Shi, 2018, Development trends of transmissions for hybrid electric vehicles using an optimized energy management strategy, Automot. Innov., 1, 291, 10.1007/s42154-018-0037-5
Amir, 2020, Bridging the gap in a resource and climate-constrained world with advanced gasoline compression-ignition hybrids, Appl. Energy, 267, 114936, 10.1016/j.apenergy.2020.114936
(2021, November 24). The Outlook and Reference on Mathworks Studio in MATLAB® and Simulink® for Global Search Algorithm. Available online: https://in.mathworks.com/help/gads/how-globalsearch-and-multistart-work.html.