Vehicle Dynamics and Control pp 457-491 | Cite as
Dynamics and Control of Hybrid Gas Electric Vehicles
Chapter
First Online:
Abstract
A hybrid automobile is one that has two or more major sources of propulsion power. Most hybrid vehicles currently available to consumers are gas-electric hybrids. They have both gasoline engines and electric motors and can be powered by either power source or both sources at the same time.
Keywords
Engine Speed Model Predictive Control Driving Cycle Hybrid Vehicle Continuously Variable Transmission
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
References
- Ambuhl, D. and Guzzella, L., “Predictive Reference Signal Generator for Hybrid Electric Vehicles,” IEEE Transactions on Vehicular Technology, Vol. 58, No. 9, pp. 4730–4740, November 2009.CrossRefGoogle Scholar
- Bageshwar, V.L., Garrard, W.L. and Rajamani, R., “Model Predictive Control of Transitional Maneuvers for Adaptive Cruise Control Vehicles,” IEEE Transactions on Vehicular Technology, Vol. 53, No. 5, pp. 1573–1585, September 2004.CrossRefGoogle Scholar
- Camacho, E.F. and Bordons, C., Model Predictive Control, 2nd edition, p. 405, Springer, 2007.Google Scholar
- Gu, B. and Rizzoni, G., “An Adaptive Algorithm for Hybrid Electrical Vehicle Energy Management Based on Driving Pattern Recognition,” Proceedings of the 2006 ASME International Mechanical Engineering Congress and Exposition, 2006.Google Scholar
- How, J., Principles of Optimal Control, Class Notes, Open Courseware, MIT, 2008. Available online at: http://ocw.mit.edu/courses/aeronautics-and-astronautics/16-323-principles-of-optimal-control-spring-2008/ Google Scholar
- Johnson, V.H., Wipke, K.B. and Rausen, D.J., “HEV Control Strategy for Real-Time Optimization of Fuel Economy and Emissions,” Proceedings of the SAE, Paper 2000-01-1543, 2000.Google Scholar
- Kang, J.M., Kolmanovsky, I. and Grizzle, J.W., “Dynamic Optimization of Lean Burn Engine Aftertreatment,” ASME Journal of Dynamic Systems, Measurement and Control, Vol. 123, No. 2, pp. 153–160, June 2001.CrossRefGoogle Scholar
- Kimura, A., Abe, T. and Sasaki, S., “Drive Force Control of a Parallel-Series Hybrid System,” JSAE Review, Vol. 20, No.3, pp. 337–341, July 1999.CrossRefGoogle Scholar
- Lin, C.C., Peng, H., Grizzle, J.W. and Kang, J.M., “Power Management Strategy for a Parallel Hybrid Electric Truck,” IEEE Transactions on Control Systems Technology, Vol. 11, No. 6, pp. 839–849, 2003.CrossRefGoogle Scholar
- Liu, J. and Peng, H., “Modeling and Control of a Power-Split Hybrid Vehicle,” IEEE Transactions on Control Systems Technology,” Vol. 16, No. 6, pp. 1242–1251, 2008.CrossRefGoogle Scholar
- Meisel, J., “An Analytic Foundation for the Toyota Prius THS-II Powertrain with a Comparison to a Strong Parallel Hybrid-Electric Powertrain,” 2006 SAE World Congress, Publication 2006-01-0666, 2006.CrossRefGoogle Scholar
- Musardo, C., Rizzoni, G., Guezennec, Y. and Stacia, B., “A-ECMS: An Adaptive Algorithm for Hybrid Electric Vehicle Energy Manegement,” European Journal of Control, Vo. 11, No. 4–5, pp. 509–524, 2005.CrossRefMathSciNetGoogle Scholar
- Pisu, P. and Rizzoni, G., “A Comparative Study of Supervisory Control Strategies for Hybrid Electric Vehicles,” IEEE Transactions on Control Systems Technology, Vol. 15, No. 3, pp. 506–518, 2007.CrossRefGoogle Scholar
- Rodatz, P., Paganelli, G., Sciarretta, A. and Guzzella, L., “Optimal Power Management of an Experimental Fuel Cell/ Supercapacitor-Powered Hybrid Vehicle,” Control Engineering Practice, Vol. 13, No. 1, pp. 41–53, January 2005.CrossRefGoogle Scholar
- Sciarretta, A., Back, M. and Guzzella, L., “Optimal Control of Parallel Hybrid Electric Vehicles,” IEEE Transactions on Control Systems Technology, Vol. 12, No. 3, pp. 352–363, 2004.CrossRefGoogle Scholar
- Sciarretta, A. and Guzzella, L., “Control of Hybrid Electric Vehicles,” IEEE Control Systems Magazine, pp. 60–70, April 2007.Google Scholar
- Toyota, “Toyota Hybrid System THS-II,” Brochure available on Toyota’s web site, Accessed on June 22, 2010, web site: http://www.toyota.co.jp/en/tech/environment/ths2/SpecialReports_12.pdf, May 2003.
- US Environmental Protection Agency, “World’s First Full Hydraulic Hybrid in a Delivery Truck,” EPA420-F-06-054, available at http://www.epa.gov/otaq/technology/420f06054.htm, June 2006
- Vahidi, A., Stefanopoulou, A. and Peng, H., “Current Management in a Hybrid Fuel Cell Power System: A Model-Predictive Control Approach,” IEEE Transactions on Control Systems Technology, Vol. 14, No. 6, pp. 1047–1057, November 2006.CrossRefGoogle Scholar
- Wu, B., Lin, C-C., Filipi, Z., Peng, H. and Assanis, D., “Optimization of Power Management Strategies for a Hydraulic Hybrid Medium Truck,” Proceedings of the 2002 Advanced Vehicle Control Conference, Hiroshima, Japan, September 2002.Google Scholar
- EPA, Driving Cycles: http://www.fueleconomy.gov/feg/fe_test_schedules.shtml, 2011.
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© Rajesh Rajamani 2012