- Filla R. (2008) Alternative systems solutions for wheel loaders and other construction equipment. In 1st International CTI Forum Alternative and Hybrid Drive Trains, CTI [Google Scholar]
- Rydberg K-E. (1998) Hydrostatic drives in heavy mobile machinery new concepts and development trends, In International Off- Highway & Powerplant Congress & Exposition, SAE, 981989. [Google Scholar]
- Carl B, IIvantysynova M, Williams K. (2006) Comparison of operational characteristics in power split continuously variable transmissions, Comercial Vehicle Engineering Congress and Exhibition, SAE 2006-01-3468. [Google Scholar]
- Grammatico S, Balluchi A, Cosoli E. (2010) A series-parallel hybrid electric powertrain for industrial vehicles, In 2010 IEEE Vehicle Power and Propulsion Conference, IEEE, pp. 1–6. [CrossRef] [Google Scholar]
- Savaresi S, Taroni F, Previdi F, Bittanti S. (2004) Control system design on a power-split cvt for high-power agricultural tractors, IEEE/ASME Transactions on Mechatronics, 9, 3, 569–579. [CrossRef] [Google Scholar]
- Lennevi J. (1994) Hydrostatic Transmission Control, Design Methodology for Vehicular Drivetrain Applications, Dissertation, Linköping University. [Google Scholar]
- Zhang R. (2002) Multivariable Robust Control of Nonlinear Systems with Application to an Electro-Hydraulic Powertrain, Dissertation, University of Illinois. [Google Scholar]
- Filla R. (2005) An event driven operator model for dynamic simulation of contruction machinery, In Proceedings from the Ninth Scandinavian International Conference on Fluid Power, Linköping University. [Google Scholar]
- Wang F, Zhang J, Sun R, Yu F. (2012) Analysis on the performance of wheel loaders in typical work cycle, Applied Mechanics and Materials, 148, 526–529. [Google Scholar]
- Hellström E, Åslund J, Nielsen L. (2010) Design of an efficient algorithm for fuel-optimal look-ahead control, Control Engineering Practice, 18, 11, 1318–1327. [CrossRef] [Google Scholar]
- Asadi B, Vahidi A. (2011) Predictive cruise control: utilizing upcoming traffic signal information for improved fuel economy and reduced trip time, IEEE Transactions on Control Systems Technology, 19, 707–714. [CrossRef] [Google Scholar]
- Khayyam H, Nahavandi S, Davis S. (2012) Adaptive cruise control look-ahead system for energy management of vehicles, Expert Systems with Applications, 39, 3, 3874–3885. [Google Scholar]
- Frank B, Pohl J, Palmberg J-O. (2009) Estimation of the potential in predictive control in a hybrid wheel loader, In SICFP’09 proceedings, The 11th Scandinavian International Conference on Fluid Power. [Google Scholar]
- Rizzoni G, Guzzella L, Baumann B.M. (1999) Unified modeling of hybrid electric vehicle drivetrains, IEEE/ASME Transactions on Mechatronics, 4, 246–257. [Google Scholar]
- Mattsson P, Åkerblom M. (2012) Continuously variable transmission and a working maching including a continuously variable transmission, Patent, WO 2012/008884 A1. [Google Scholar]
- Lauinger C, Englisch A, Gotz A, Teubert A, Muller E, Baumgartner A. (2007) Cvt components for powersplit commercial vehicle transmissions, In Proceedings of the 6th International CTI Symposium, CTI. [Google Scholar]
- Bellman R. (1957) Dynamic Programming, Princeton University Press. [Google Scholar]
- Bertsekas D.P. (2005) Dynamic Programming and Optimal Control, volume 1, Athena Scientific, 3 ed. [Google Scholar]
- Nilsson T, Fröberg A, Åslund J. (2012) Optimal operation of a turbocharged diesel engine during transients, SAE International Journal of Engines, 5, 2, 571–578. [Google Scholar]
- Silva J.E, Sousa J.B. (2011) Dynamic programming techniques for feedback control, In Preprints of the 18th IFAC World Congress, IFAC, pp. 6857–6862. [Google Scholar]
- McDonough K, Kolmanovsky I, Filev D, Yanakiev D, Szwabowski S, Michelini J. (2012) Stochastic dynamic programming control policies for fuel efficient in-traffic driving, In American Control Conference (ACC), IEEE, pp 3986–3991. [CrossRef] [Google Scholar]
- Nilsson T, Fröberg A, Åslund J. (2012) Fuel potential and prediction sensitivity of a power-split cvt in a wheel loader, In IFAC Workshop on Engine and Powertrain Control, Simulation and Modeling, IFAC, pp. 49–56. [Google Scholar]
- Nilsson T, Fröberg A, Åslund J. (2012) On the use of stochastic dynamic programming for evaluating a power-split cvt in a wheel loader, In 8th IEEE Vehicle Power and Propulsion Conference, IEEE, pp. 840–845. [Google Scholar]
- Leroy T, Malaize J, Corde G. (2012) Towards real-time optimal energy management of hev powertrains using stochastic dynamic programming, In 8th IEEE Vehicle Power and Propulsion Conference, IEEE, pp. 383–388. [Google Scholar]
- Nilsson T, Fröberg A, Åslund J. (2013) Fuel and time minimization in a cvt wheel loader application, In 7th IFAC Symposium on Advances in Automotive Control, IFAC. [Google Scholar]
- Hellström E. (2010) Look-ahead Control of Heavy Vehicles, PhD Thesis, Linköping University. [Google Scholar]
Numéro |
Oil Gas Sci. Technol. – Rev. IFP Energies nouvelles
Volume 70, Numéro 1, January–February 2015
IFP Energies nouvelles International Conference: E-COSM’12 – IFAC Workshop on Engine and Powertrain Control, Simulation and Modeling
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Page(s) | 159 - 178 | |
DOI | https://doi.org/10.2516/ogst/2014022 | |
Publié en ligne | 3 septembre 2014 |
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