Emerging Technologies for Hybridized Energy Storage System for Electric Vehicles
Abstract
Keywords
Full Text:
PDFReferences
A. Ghosh, ‘‘Possibilities and challenges for the inclusion of the electric vehicle (EV) to reduce the carbon footprint in the transport sector: A review’’, Energies, vol. 13, no. 10, pp. 2602–2623, 2020.
K. Jorgensen, “Technologies for electric, hybrid and hydrogen vehicles: electricity from renewable energy sources in transport”, Util Policy. 16(2):72-79, 2008.
N. Omar, M. Daowd, O. Hegazy, et al. “Standardization work for BEV and HEV applications: critical appraisal of recent traction battery documents”, Energies. 5(1):138-156, 2012.
F. Hacker, R. Harthan, F. Matthes, W. Zimmer, “Environmental impacts and impact on the electricity market of a large-scale introduction of electric cars in Europe-critical review of literature”, ETC/ACC Tech Paper. 4:56-90, 2009.
J. Martínez-Lao, F.G. Montoya, M.G. Montoya, F. Manzano-Agugliaro, “Electric vehicles in Spain: an overview of charging systems”, Renew Sust Energ Rev.77:970-983, 2017.
AM. Andwari, A. Pesiridis, S. Rajoo, R. Martinez-Botas, V. Esfahanian, “A review of battery electric vehicle technology and readiness levels”, Renew Sust Energ Rev. 78:414-430, 2017.
M.A. Hannan, M.M. Hoque, A. Mohamed, and A. Ayob, ‘‘Review of energy storage systems for electric vehicle applications: Issues and challenges’’, Renew. Sustain. Energy Rev., vol. 69, pp. 771–789, Mar. 2017.
Y. Ligen, H. Vrubel, and H.H. Girault, ‘‘Mobility from renewable electricity: Infrastructure comparison for battery and hydrogen fuel cell vehicles’’, World Electr. Vehicle J., vol. 9, no. 1, pp. 3–14, 2018.
A. Khaligh and Z. Li, ‘‘Battery, ultracapacitor, fuel cell, and hybrid energy storage systems for electric, hybrid electric, fuel cell, and plug-in hybrid electric vehicles: State of the art,’’ IEEE Trans. Veh. Technol., vol. 59, no. 6, pp. 2806–2814, Jul. 2010.
Sayed, K., & Gabbar, H. A. “Electric vehicle to power grid integration using three-phase three-level AC/DC converter and PI-fuzzy controller”. Energies, 9(7), 532, 2016.
N. Vafamand, M. M. Arefi, M. H. Khooban, T. Dragicevic, and F. Blaabjerg, ‘‘Nonlinear model predictive speed control of electric vehi_cles represented by linear parameter varying models with bias terms,’’ IEEE J. Emerg. Sel. Topics Power Electron., vol. 7, no. 3, pp. 2081–2089, Sep. 2019.
Zhao, X., Yu, Q., Yu, M., & Tang, Z. “Research on an equal power allocation electronic differential system for electric vehicle with dual-wheeled-motor front drive based on a wavelet controller”. Advances in Mechanical Engineering, 10(2), 1687814018760039, (2018).
Sakalli, A., & Kumbasar, T. “On the design and gain analysis of IT2-FLC with a case study on an electric vehicle”. In 2017 IEEE International Conference on Fuzzy Systems (FUZZ-IEEE) (pp. 1-6). IEEE, july 2017.
Monteiro, V., Exposto, B., Ferreira, J. C., & Afonso, J. L. “Improved vehicle-to-home (iV2H) operation mode: experimental analysis of the electric vehicle as off-line UPS”. IEEE Transactions on Smart Grid, 8(6), 2702-2711. 2016.
Podder, A. K., Chakraborty, O., Islam, S., Kumar, N. M., & Alhelou, H. H. “Control strategies of different hybrid energy storage systems for electric vehicles applications”. IEEE Access, 9, 51865-51895, 2021.
Yu, S., Lin, D., Sun, Z., & He D., “Efficient model predictive control for real‐time energy optimization of battery‐supercapacitors in electric vehicles”. International Journal of Energy Research, 44(9), 7495-7506, 2020.
Hredzak, B., Agelidis, V. G., & Jang, M. A “Model predictive control system for a hybrid battery-ultracapacitor power source”. IEEE Transactions on Power Electronics, 29(3), 1469-1479, 2013.
P. Bhattacharyya, A. Banerjee, S. Sen, S. K. Giri, and S. Sadhukhan, ‘‘A modified semi-active topology for battery-ultracapacitor hybrid energy storage system for EV applications,’’ in Proc. IEEE Int. Conf. Power Electron., Smart Grid Renew. Energy (PESGRE), Jan. 2020, pp. 1–6.
Nguyen, B. H., German, R., Trovão, J. P. F., & Bouscayrol, A. “Real-time energy management of battery/supercapacitor electric vehicles based on an adaptation of Pontryagin's minimum principle”. IEEE transactions on Vehicular Technology, 68(1), 203-212, 2018.
Vidhya, S. D., & Balaji, M. “Modelling, design and control of a light electric vehicle with hybrid energy storage system for Indian driving cycle”. Measurement and control, 52(9-10), 1420-1433, 2019
Zhang, Q., Deng, W., Zhang, S., & Wu, J. “A rule based energy management system of experimental battery/supercapacitor hybrid energy storage system for electric vehicles”. Journal of Control Science and Engineering, 2016.
Xiaoliang, H., Hiramatsu, T., & Yoichi, H. “Energy management strategy based on frequency-varying filter for the battery supercapacitor hybrid system of electric vehicles”. In 2013 World Electric Vehicle Symposium and Exhibition (EVS27) (pp. 1-6). IEEE, November 2013.
Wang, X., Tao, J., & Zhang, R. “Fuzzy energy management control for battery/ultra-capacitor hybrid electric vehicles”. In 2016 Chinese Control and Decision Conference (CCDC) (pp. 6207-6211). IEEE, May 2016.
Oubelaid A., Alharbi H., Humayd A. S. B., Taib N., Rekioua T., and Ghoneim S. S. M., ‘‘Fuzzy-energy-management-based intelligent direct torque control for a battery—Supercapacitor electric vehicle,’’ Sustainability, vol. 14, no. 14, p. 8407, Jul. 2022.