Review on alternative propulsion in automotives -hybrid vehicles

  • Authors

    • Arun B Basavaradder Assistant Professor, Department of Aeronautical & Automobile Engineering
    • Dayananda Pai K. PG Student,Department of Aeronautical & Automobile Engineering
    • Chethan K N Professor, Department of Aeronautical & Automobile Engineering
    2018-07-08
    https://doi.org/10.14419/ijet.v7i3.11455
  • Degree and Architecture of Hybrid, Power Sources, Energy Storage Device and Its Management System, Charging Points.
  • The dynamic diminishing in overall oil stores and proximity of stringent outflows runs the world over, have made a desperate prerequisite for the making of automobiles with upgraded effectiveness. This is the change time frame to move with elective powertrains as an Electric driven, hybrid, fuel cell models are being produced. Energy Management System (EMS) are given significance for capacity and improving the effectiveness of machines. The operation of Hybrid Electric Vehicles (HEVs) in different landscape with their fuel utilization is accounted. Hybrid powertrain like series, parallel and mixed are clarified. Testing undertaking is the appropriation of charging station situation for India and compelling use of hybrid vehicles. Battery management is the key part in HEV which require search for various methodologies are taken into for creating. The correlation of the customary motors finished with hybrid vehicles.

     

     


     
  • References

    1. [1] M. Awadallah, P. Tawadros, P. Walker, and N. Zhang, “Dynamic modelling and simulation of a manual transmission based mild hybrid vehicle,†Mech. Mach. Theory, vol. 112, pp. 218–239, 2017. https://doi.org/10.1016/j.mechmachtheory.2017.02.011 .

      [2] S. G. Wirasingha, S. Member, A. Emadi, and S. Member, “Pihef : Plug-In Hybrid Electric Factor,†vol. 60, no. 3, pp. 1279–1284, 2011.

      [3] L. Ju, Z. Tan, H. Li, X. Yu, and H. Zhang, “Model for Wind Power and Plug-In Hybrid Electric Vehicles under Different Grid-Connected Modes,†vol. 2014, 2014.

      [4] M. Ikram, M. Rashid, and H. Danial, “ADVISOR Simulation and Performance Test of Split Plug-in Hybrid Electric Vehicle Conversion,†Energy Procedia, vol. 0, pp. 1–6, 2016.

      [5] F. Millo, C. Cubito, L. Rolando, E. Pautasso, and E. Servetto, “Design and development of an hybrid light commercial vehicle,†Energy, pp. 1–10, 2015.

      [6] X. Wang, H. He, F. Sun, X. Sun, and H. Tang, “Comparative study on different energy management strategies for plug-in hybrid electric vehicles,†Energies, vol. 6, no. 11, pp. 5656–5675, 2013. https://doi.org/10.3390/en6115656.

      [7] Modelling of electric and parallel-hybrid electric vehicle using Matlab/Simulink environment and planning of charging stations through ageographic information system and genetic algorithms Susana AlegreâŽ, Juan V. Míguez, José Carpio

      [8] A. Al-Samari, “Study of emissions and fuel economy for parallel hybrid versus conventional vehicles on real world and standard driving cycles,†Alexandria Eng. J., pp. 1–6, 2016.

      [9] S. Alegre, J. V. Míguez, and J. Carpio, “Modelling of electric and parallel-hybrid electric vehicle using Matlab/Simulink environment and planning of charging stations through a geographic information system and genetic algorithms,†Renew. Sustain. Energy Rev., vol. 74, no. February, pp. 1020–1027, 2017. https://doi.org/10.1016/j.rser.2017.03.041.

      [10] Study of emissions and fuel economy for parallel hybrid versus conventional vehicles on real world and standard driving cycles Ahmed Al-Samari

      [11] P. M. J. Kamper, “Hybrid Electrical Vehicles,†no. June, 2008.

      [12] Stability enhancement of the motor drive DC input voltage of an electric vehicle using on-board hybrid energy storage systems João P. Trovãoa,b,âŽ, Mário A. Silvab, Carlos Henggeler Antunesb,c, Maxime R. Duboisa

      [13] P. Piliay, “Literature survey of permanent magnet ac motors and drives p. piliay, member, ieee, and,†1989.

      [14] H. Performance, “Advanced BLDC Motor Drive for Low Cost and High Performance Propulsion System in Electric and,†pp. 246–251, 2001.

      [15] D. M. Bellur and M. K. Kazimierczuk, “DC-DC CONVERTERS FOR ELECTRIC VEHICLE APPLICATIQNS,†pp. 286–293, 2007.

      [16] I. Boldea et al., “With Reduced or No Permanent Magnets : An Overview,†vol. 61, no. 10, pp. 5696–5711, 2014.

      [17] C. Namuduri and P. C. Sen, “A Servo-Control System Using a Self-Controlled Lt-,†vol. I, no. 2, pp. 283–295, 1987.

      [18] S. Nikam, R. Vandana, and B. G. Fernandes, “A high torque density permanent magnet free motor for in-wheel electric vehicle application,†no. c, 2011.

      [19] P. C. Sen, “Electric Motor Drives and Control-Past , Present , and Future,†vol. 37, no. 6, pp. 562–575, 1990.

      [20] J. P. Trovão, M. A. Silva, C. Henggeler, and M. R. Dubois, “Stability enhancement of the motor drive DC input voltage of an electric vehicle using on-board hybrid energy storage systems,†Appl. Energy, vol. 205, no. March, pp. 244–259, 2017. https://doi.org/10.1016/j.apenergy.2017.07.084.

      [21] K. P. Phillips, “Current-Source Converter for,†vol. I, no. 6, pp. 679–683, 1972.

      [22] L. Huat, Y. Ye, M. Chian, W. Tong, M. Kun, and T. Ching, “Computational fluid dynamics simulation on open cell aluminium foams for Li-ion battery cooling system,†Appl. Energy, 2017.

      [23] S. M. Rezvanizaniani, Z. Liu, Y. Chen, and J. Lee, “Review and recent advances in battery health monitoring and prognostics technologies for electric vehicle (EV) safety and mobility,†J.

      [24] R. S. Morris, B. G. Dixon, T. Gennett, R. Raffaelle, and M. J. Heben, “High-energy , rechargeable Li-ion battery based on carbon nanotube technology à¬,†vol. 138, pp. 277–280, 2004.

      [25] A. Panday and H. O. Bansal, “Hybrid Electric Vehicle Performance Analysis under Various Temperature Conditions,†Energy Procedia, vol. 75, pp. 1962–1967, 2015 https://doi.org/10.1016/j.egypro.2015.07.238.

      [26] S. Xie, R. Xiong, Y. Zhang, and H. He, “The Estimation of State of Charge for Power Battery Packs used in Hybrid Electric Vehicle,†Energy Procedia, vol. 105, no. 10, pp. 2678–2683, 2017. https://doi.org/10.1016/j.egypro.2017.03.774.

      [27] S. Zhang, R. Xiong, and J. Cao, “Battery durability and longevity based power management for plug-in hybrid electric vehicle with hybrid energy storage system,†Appl. Energy, vol. 179, pp. 316–328, 2016. https://doi.org/10.1016/j.apenergy.2016.06.153.

      [28] C. Capasso and O. Veneri, “Integration between Super-capacitors and ZEBRA Batteries as High Performance Hybrid Storage System for Electric Vehicles,†Energy Procedia, vol. 105, pp. 2539–2544, 2017. https://doi.org/10.1016/j.egypro.2017.03.727.

      [29] The Estimation of State of Charge for Power Battery Packs used in Hybrid Electric Vehicle Shanshan Xiea,b, Rui Xionga,b, Yongzhi Zhanga,b, Hongwen Hea,b,*

      [30] C. Pinto, J. V Barreras, R. De Castro, R. E. Araújo, and E. Schaltz, “AC,†Energy, 2017.

      [31] T. Hiramatsu, X. Huang, M. Kato, and Y. Hori, “Capacity Design of Supercapacitor-Battery Hybrid Energy System with Repetitive Charging,†vol. 197, no. 3, pp. 898–905, 2016.

      [32] A. Khaligh, S. Member, Z. Li, and S. Member, “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,†vol. 59, no. 6, pp. 2806–2814, 2010 https://doi.org/10.1109/TVT.2010.2047877.

      [33] Battery durability and longevity based power management for plug-in hybrid electric vehicle with hybrid energy storage system Shuo Zhang a, Rui Xiong a,b,⇑, Jiayi Cao a

      [34] X. Zhao and L. Yang, “IMECE 2012-87324 a strategy for estimating state-of-charge and state-of-health of li-ion batteries in electric and hybrid electric vehicles,†pp. 1–8, 2016.

      [35] Energy management strategy for fuel cell-supercapacitor hybrid vehicles based on prediction of energy demand Mauro G. Carignano a, *, Ramon Costa-Castello b, Vicente Roda c, Norberto M. Nigro d, Sergio Junco e, Diego Feroldi

      [36] D. Feroldi, M. Serra, and J. Riera, “Design and Analysis of Fuel-Cell Hybrid Systems Oriented to Automotive Applications,†vol. 58, no. 9, pp. 4720–4729, 2009.

      [37] G. Pede, A. Iacobazzi, S. Passerini, A. Bobbio, and G. Botto, “FC vehicle hybridisation : an affordable solution for an energy-efficient FC powered drive train,†vol. 125, pp. 280–291, 2004.

      [38] M. G. Carignano, R. Costa-Castelló, V. Roda, N. M. Nigro, S. Junco, and D. Feroldi, “Energy management strategy for fuel cell-supercapacitor hybrid vehicles based on prediction of energy demand,†J. Power Sources, vol. 360, pp. 419–433, 2017. https://doi.org/10.1016/j.jpowsour.2017.06.016.

      [39] Z. Lei et al., “Analysis and coordinated control of mode transition and shifting for a full hybrid electric vehicle based on dual clutch transmissions,†Mech. Mach. Theory, vol. 114, pp. 125–140, 2017 https://doi.org/10.1016/j.mechmachtheory.2017.04.001.

      [40] A. Dualeh, N. Tétreault, T. Moehl, and P. Gao, “Effect of Annealing Temperature on Film Morphology of Organic – Inorganic Hybrid Pervoskite Solid-State Solar Cells,†pp. 1–9, 2014. https://doi.org/10.1002/adfm.201304022.

      [41] Y. Kim, N. Chang, Y. Wang, and M. Pedram, “Maximum Power Transfer Tracking for a Photovoltaic-Supercapacitor Energy System ∗,†pp. 307–312, 2010. https://doi.org/10.1145/1840845.1840909.

      [42] Ultracapacitors for Use in Power Quality and Distributed Resource Applications Philip P. Barker - IEEE Senior Member

      [43] Ultracapacitor technologies and application in hybrid and electric vehicles Andrew Burke,y

      [44] Energy Management of a Fuel Cell/Supercapacitor/Battery Power Source for Electric Vehicular Applications Majid Zandi, Alireza Payman, Jean-Philippe Martin, Serge Pierfederici, Bernard Davat, Member, IEEE, and Farid Meibody-Tabar

      [45] M. Ortúzar, J. Moreno, J. Dixon, and S. Member, “Implementation and Evaluation of an Ultracapacitor Based Auxiliary Energy System for Electric Vehicles,†vol. 54, no. 4, pp. 2147–2156, 2007.

      [46] W. Zhuang, X. Zhang, D. Li, L. Wang, and G. Yin, “Mode shift map design and integrated energy management control of a multi-mode hybrid electric vehicle,†Appl. Energy, vol. 204, pp. 476–488, 2017 https://doi.org/10.1016/j.apenergy.2017.07.059.

      [47] S. A. Evangelou and W. Shabbir, “Dynamic modeling platform for series hybrid electric vehicles,†IFAC-PapersOnLine, vol. 49, no. 11, pp. 533–540, 2016. https://doi.org/10.1016/j.ifacol.2016.08.078.

      [48] S. Wei, Y. Zou, F. Sun, and O. Christopher, “A pseudospectral method for solving optimal control problem of a hybrid tracked vehicle,†Appl. Energy, vol. 194, pp. 588–595, 2017 https://doi.org/10.1016/j.apenergy.2016.07.020.

      [49] W. Enang and C. Bannister, “Modelling and control of hybrid electric vehicles (A comprehensive review),†Renew. Sustain. Energy Rev., vol. 74, no. January, pp. 1210–1239, 2017. https://doi.org/10.1016/j.rser.2017.01.075.

      [50] M. Schori, T. J. Boehme, B. Frank, and M. Schultalbers, Solution of a Hybrid Optimal Control Problem For a Parallel Hybrid Vehicle, vol. 46, no. 21. IFAC, 2013.

      [51] L. RaslaviÄius, A. KerÅ¡ys, and R. Makaras, “Management of hybrid powertrain dynamics and energy consumption for 2WD, 4WD, and HMMWV vehicles,†Renew. Sustain. Energy Rev., vol. 68, no. September 2016, pp. 380–396, 2017.

      [52] S. Zhang, R. Xiong, and F. Sun, “Model predictive control for power management in a plug-in hybrid electric vehicle with a hybrid energy storage system,†Appl. Energy, vol. 185, pp. 1654–1662, 2017 https://doi.org/10.1016/j.apenergy.2015.12.035.

      [53] A. Emadi, K. Rajashekara, S. S. Williamson, and S. M. Lukic, “Topological overview of hybrid electric and fuel cell vehicular power system architectures and configurations,†IEEE Trans. Veh. Technol., vol. 54, no. 3, pp. 763–770, 2005. https://doi.org/10.1109/TVT.2005.847445.

      [54] Ra, S. Kumar, P. Pisu, J. Rios, and P. Jethani, “Model-based design validation for advanced energy management strategies for electrified hybrid power trains using innovative vehicle hardware in the loop ( VHIL ) approach,†Appl. Energy, vol. 204, pp. 287–302, 2017 https://doi.org/10.1016/j.apenergy.2017.07.028.

      [55] X. Liu, M. C. Roberts, and R. Sioshansi, “Spatial effects on hybrid electric vehicle adoption,†Transp. Res. Part D Transp. Environ., vol. 52, pp. 85–97, 2017. https://doi.org/10.1016/j.trd.2017.02.014.

      [56] Napoli, F. Sergi, and V. Antonucci, “Study and design of a hybrid electric vehicle (Lithium Batteries-PEM FC),†Int. J. Hydrogen Energy, vol. 42, no. 5, pp. 3166–3184, 2017. https://doi.org/10.1016/j.ijhydene.2016.12.082.

      [57] S. A. Evangelou and W. Shabbir, “Dynamic modeling platform for series hybrid electric vehicles,†IFAC-PapersOnLine, vol. 49, no. 11, pp. 533–540, 2016. https://doi.org/10.1016/j.ifacol.2016.08.078.

      [58] H. Li and G. Zhang, “Hybrid electric vehicle drive control,†Procedia Environ. Sci., vol. 10, no. PART A, pp. 403–407, 2011.

      [59] S. Brouk, M. Buey, S. Ly, M. Pedron, and S. Burgalat, “Control strategies for hybrid vehicles in mountainous areas,†Procedia Comput. Sci., vol. 60, no. 1, pp. 284–291, s2015.

      [60] Z. Dimitrova and F. Maréchal, “Techno-economic design of hybrid electric vehicles using multi objective optimization techniques,†Energy, vol. 91, pp. 630–644, 2015. https://doi.org/10.1016/j.energy.2015.08.073.

      [61] S. Mancini, “The Hybrid Vehicle Routing Problem,†Transp. Res. Part C Emerg. Technol., vol. 78, pp. 1–12, 2017. https://doi.org/10.1016/j.trc.2017.02.004.

      [62] M. Strehler, S. Merting, and C. Schwan, “Energy-efficient shortest routes for electric and hybrid vehicles,†Transp. Res. Part B Methodol., vol. 0, pp. 1–25, 2016.

      [63] F. Mirhakimi and A. Karimi, “A preliminary study for improving reliability in hybrid vehicles,†Procedia Comput. Sci., vol. 42, no. C, pp. 308–312, 2014. https://doi.org/10.1016/j.procs.2014.11.067.

      [64] J. P. Trovão, M. A. Silva, C. Henggeler, and M. R. Dubois, “Stability enhancement of the motor drive DC input voltage of an electric vehicle using on-board hybrid energy storage systems,†Appl. Energy, vol. 205, no. March, pp. 244–259, 2017. https://doi.org/10.1016/j.apenergy.2017.07.084.

      [65] P. Seraneeprakarn, S. Huang, V. Shankar, F. Mannering, N. Venkataraman, and J. Milton, “Occupant injury severities in hybrid-vehicle involved crashes: A random parameters approach with heterogeneity in means and variances,†Anal. Methods Accid. Res., vol. 15, pp. 41–55, 2017. https://doi.org/10.1016/j.amar.2017.05.003.

      [66] C. Capasso and O. Veneri, “Integration between Super-capacitors and ZEBRA Batteries as High Performance Hybrid Storage System for Electric Vehicles,†Energy Procedia, vol. 105, pp. 2539–2544, 2017. https://doi.org/10.1016/j.egypro.2017.03.727.

      [67] C. Zheng, G. Xu, K. Xu, Z. Pan, and Q. Liang, “An energy management approach of hybrid vehicles using traffic preview information for energy saving,†Energy Convers. Manag., vol. 105, pp. 462–470, 2015 https://doi.org/10.1016/j.enconman.2015.07.061.

      [68] D. B. T. Leroy, Impact of Driveability Constraints on Local Optimal Energy Management Strategies for Hybrid Powertrains, vol. 46, no. 21. IFAC, 2013.

      [69] L. Huat, M. Chian, M. Kun, and W. Tong, “Numerical analyses on aluminum foams cooling plate for lithium-ion batteries,†Energy Procedia, vol. 105, pp. 4751–4756, 2017. https://doi.org/10.1016/j.egypro.2017.03.1034.

      [70] R. S. Morris, B. G. Dixon, T. Gennett, R. Raffaelle, and M. J. Heben, “High-energy , rechargeable Li-ion battery based on carbon nanotube technology à¬,†vol. 138, pp. 277–280, 2004.

      [71] Q. Ren, D. A. Crolla, and A. Wheatley, “Power management and control strategies for a hybrid vehicle with a,†2006.

      [72] R. Gasper, M. G. Chavez, and D. Abel, “Adaptive flatness based control of a hydraulic clutch actuator,†IFAC Proc. Vol., pp. 707–712, 2010. https://doi.org/10.3182/20100901-3-IT-2016.00070.

      [73] W. Enang and C. Bannister, “Modelling and control of hybrid electric vehicles ( A comprehensive review ),†Renew. Sustain. Energy Rev., vol. 74, no. August 2016, pp. 1210–1239, 2017.

      [74] N. Roberts, M. Dempsey, and A. Picarelli, Detailed Powertrain Dynamics Modelling in Dymola - Modelica, vol. 46, no. 21. IFAC, 2013.

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    B Basavaradder, A., Pai K., D., & K N, C. (2018). Review on alternative propulsion in automotives -hybrid vehicles. International Journal of Engineering & Technology, 7(3), 1311-1319. https://doi.org/10.14419/ijet.v7i3.11455