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Fuel Consumption and Emission Reduction for Hybrid Electric Vehicles with Electrically Heated Catalyst

Journal Article
2020-37-0017
ISSN: 2641-9645, e-ISSN: 2641-9645
Published June 30, 2020 by SAE International in United States
Fuel Consumption and Emission Reduction for Hybrid Electric Vehicles with Electrically Heated Catalyst
Sector:
Citation: Hofstetter, J., Boucharel, P., Atzler, F., and Wachtmeister, G., "Fuel Consumption and Emission Reduction for Hybrid Electric Vehicles with Electrically Heated Catalyst," SAE Int. J. Adv. & Curr. Prac. in Mobility 3(1):702-714, 2021, https://doi.org/10.4271/2020-37-0017.
Language: English

References

  1. Avolio , G. et al. Super Clean Electrified Diesel: Towards Real NOx Emissions below 35 mg/km 27th Aachen Colloquium Automobile and Engine Technology 2018
  2. Onori , S. , Serrao , L. , and Rizzoni , G. Hybrid Electric Vehicles 2016 10.1007/978-1-4471-6781-5
  3. Guzzella , L. and Sciarretta , A. 2013
  4. Bellman , R. Dynamic Programming and the Smoothing Problem Management Science 3 1 111 113 1956 10.1287/mnsc.3.1.111
  5. Serrao , L. , Onori , S. , and Rizzoni , G. A Comparative Analysis of Energy Management Strategies for Hybrid Electric Vehicles J. Dyn. Sys., Meas., Control 133 3 31012 2011 10.1115/1.4003267
  6. Sciarretta , A. , Back , M. , and Guzzella , L. Optimal Control of Parallel Hybrid Electric Vehicles IEEE Trans. Contr. Syst. Technol. 12 3 352 363 2004 10.1109/TCST.2004.824312
  7. Musardo , C. , Rizzoni , G. , Guezennec , Y. , and Staccia , B. A-ECMS: An Adaptive Algorithm for Hybrid Electric Vehicle Energy Management European Journal of Control 11 4-5 509 524 2005 10.3166/ejc.11.509-524
  8. Kim , N. , Cha , S. , and Peng , H. Optimal Control of Hybrid Electric Vehicles Based on Pontryagin's Minimum Principle IEEE Trans. Contr. Syst. Technol. 19 5 1279 1287 2011 10.1109/TCST.2010.2061232
  9. Pontryagin , L. , Boltyanskii , V. , Gamkrelidze , R. , and Mishchenko , E. The Mathematical Theory of Optimal Processes: Uebers. aus d. russ New York Wiley-Interscience 1962
  10. Chasse , A. and Sciarretta , A. Supervisory Control of Hybrid Powertrains: An Experimental Benchmark of Offline Optimization and Online Energy Management: An Experimental Benchmark of Offline Optimization and Online Energy Management Control Engineering Practice 19 11 1253 1265 2011 10.1016/j.conengprac.2011.04.008
  11. Wei , X. , Guzzella , L. , Utkin , V.I. , and Rizzoni , G. Model-Based Fuel Optimal Control of Hybrid Electric Vehicle Using Variable Structure Control Systems J. Dyn. Sys., Meas., Control 129 1 13 2007 10.1115/1.2397148
  12. Paganelli , G. , Guerra , T.M. , Delprat , S. , Santin , J.-J. et al. Simulation and Assessment of Power Control Strategies for a Parallel Hybrid Car Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 214 7 705 717 2000 10.1243/0954407001527583
  13. Paganelli , G. General supervisory Control Policy for the Energy Optimization of Charge-Sustaining Hybrid Electric Vehicles JSAE Review 22 4 511 518 2001 10.1016/S0389-4304(01)00138-2
  14. Sivertsson , M. Adaptive Control Using Map-Based ECMS for a PHEV IFAC Proceedings 45 30 357 362 2012 10.3182/20121023-3-FR-4025.00074
  15. Kessels , J.T.B.A. , Koot , M.W.T. , van den Bosch , P.P.J. , and Kok , D.B. Online Energy Management for Hybrid Electric Vehicles IEEE Trans. Veh. Technol. 57 6 3428 3440 2008 10.1109/TVT.2008.919988
  16. Onori , S. and Serrao , L. On Adaptive-ECMS Strategies for Hybrid Electric Vehicles Int. Sci. Conf. hybrid electric vehicles 1 7 2011
  17. Beierlein , G. , Ließner , R. , Fechert , R. , and Bäker , B. Heuristic Operating Strategies For Parallel Hybrid Vehicles in the Context of Model-Based Application Bargende , M. , Reuss , H.-C. , and Wiedemann , J. 17. Internationales Stuttgarter Symposium: Automobil- und Motorentechnik, Proceedings Springer Fachmedien Wiesbaden Wiesbaden 9783658169879 2017
  18. Salcher , T. , Neumann , L. , Kramer , G. , and Herzog , H.-G. Fuel-Efficient State of Charge Control in Hybrid Electric Vehicles 2010 IEEE Vehicle Power and Propulsion Conference, Lille 1 5 2010 10.1109/VPPC.2010.5729132
  19. Liessner , R. , Schroer , C. , Dietermann , A. , and Bäker , B. Deep Reinforcement Learning for Advanced Energy Management of Hybrid Electric Vehicles Proceedings of the 10th International Conference on Agents and Artificial Intelligence ICAART, Funchal, Madeira, Portugal 1 61 72 2018 10.5220/0006573000610072
  20. Nüesch , T. , Cerofolini , A. , Mancini , G. , Cavina , N. et al. Equivalent Consumption Minimization Strategy for the Control of Real Driving NOx Emissions of a Diesel Hybrid Electric Vehicle Energies 7 5 3148 3178 2014 10.3390/en7053148
  21. Maamria , D. , Chaplais , F. , Petit , N. , and Sciarretta , A. Comparison of Several Strategies for HEV energy Management System Including Engine and Catalyst Temperatures Proceedings of the American Control Conference 2015 10.1109/ACC.2015.7171183
  22. Michel , P. , Charlet , A. , Colin , G. , Chamaillard , Y. et al. 3WCC Temperature Integration in a Gasoline-HEV Optimal Energy Management Strategy Advances in Mechanical Engineering 6 1 802597 2015 10.1155/2014/802597
  23. Tschopp , F. , Nüesch , T. , Wang , M. , and Onder , C. Optimal Energy and Emission Management of a Diesel Hybrid Electric Vehicle Equipped with a Selective Catalytic Reduction System SAE Technical Paper 2015-24-2548 2015 https://doi.org/10.4271/2015-24-2548
  24. European Union Comission Regulation (EU) 2017/1151 of 1 June 2017 Official Journal of the European Union L175 60 1 643 2017
  25. Transport for London http://content.tfl.gov.uk/london-exhaust-emissions-study-developing-a-test-programme.pdf November 29, 2019

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