Open Access
Issue
E3S Web Conf.
Volume 197, 2020
75th National ATI Congress – #7 Clean Energy for all (ATI 2020)
Article Number 07009
Number of page(s) 16
Section Hydraulics and Pneumatics
DOI https://doi.org/10.1051/e3sconf/202019707009
Published online 22 October 2020
  1. https://www.tascproject.eu/en/, POR FESR 2014-2020 “TASC Trattrici Agricole Smart & Clean, 2020. [Google Scholar]
  2. M. Borghi, B. Zardin, F. Mancarella, Energy Dissipation Of The Hydraulic Circuit Of Remote Auxiliary Utilities Of An Agricultural Tractor, Proceedings of the Bath/ASME Symposium on Fluid Power & Motion Control, Bath, UK, Sept. 15-17, 2010 [Google Scholar]
  3. M. Axin, B. Eriksson, P. Krus, Energy Efficient Fluid Power System for Mobile Machines With Open-Centre Characteristics, Proceedings of the 9th JFPS International Symposium on Fluid Power, Matsue, Japan, Oct. 28-31, 2014 [Google Scholar]
  4. F. Pintore, B. Zardin, M. Borghi, Fluid Power Supply Unit For Agricultural Tractors: Towards Energy Saving Through Simulation, Proceedings of the 7th Ph.D. Symposium on Fluid Power, Reggio Emilia, Italy, Jun. 27-30, 2012. [Google Scholar]
  5. K. Liu, Y. Gao, Z. Tu Energy saving potential of load sensing system with hydromechanical pressure compensation and independent metering, International Journal of Fluid Power, 17 (3), pp. 173–186, 2016, doi: https://doi.org/10.1080/14399776.2016.1185877 [CrossRef] [Google Scholar]
  6. A. Benevelli, B. Zardin, M. Borghi, Independent Metering Architectures For Agricultural Tractors Auxiliary Utilities, Proceedings of the 7th Ph.D. Symposium on Fluid Power, Reggio Emilia, Italy, Jun. 27-30, 2012. [Google Scholar]
  7. M. Borghi, B. Zardin, F. Belluzzi, F. Pintore, Energy Savings in the Hydraulic Circuit of Agricultural Tractors, Energy Procedia, Vol. 45, pp. 352-361, 2014, https://doi.org/10.1016/j.egypro.2014.01.038 [CrossRef] [Google Scholar]
  8. X. Tian, J.C. Gomez, A. Vacca, S. Fiorati, F. Pintore, Analysis of Power Distribution in the Hydraulic Remote System of Agricultural Tractors through Modelling and Simulations, Proceedings of the ASME/BATH 2019 Symposium on Fluid Power and Motion Control, Longboat Key, Florida, USA. Oct. 7-9, 2019. V001T01A042. ASME. https://doi.org/10.1115/FPMC2019-1686 [Google Scholar]
  9. X. Tian, A. Vacca, S. Fiorati, F. Pintore, An Analysis of the Energy Consumption in the High-Pressure System of an Agricultural Tractor through Modeling and Experiment, 77th International Conference on Agricultural Engineering, Hannover, Germany, Nov. 8-9, 2019 [Google Scholar]
  10. P. Casoli, A. Gambarotta, N. Pompini, L. Riccò, Development and application of cosimulation and control-oriented modeling in the improvement of performance and energy saving of mobile machinery, Energy Procedia, Vol. 45, pp. 849–858, 2014, Elsevier, doi: https://doi.org/10.1016/j.egypro.2014.01.090 [CrossRef] [Google Scholar]
  11. P. Casoli, N. Pompini, L. Riccò, Simulation of an Excavator Hydraulic System Using Nonlinear Mathematical Models. Strojniški vestnik Journal of Mechanical Engineering 61 10, pp. 583-593, 2015, doi: https://doi.org/10.5545/sv-jme.2015.2570 [CrossRef] [Google Scholar]
  12. A. Macor, A. Benato, A. Rossetti, Z. Bettio, Study and Simulation of a Hydraulic Hybrid Powertrain, Energy Procedia, Vol. 126, pp. 1131-1138, Sept. 1, 2017, 2nd Conference of the Italian Thermal Machines Engineering Association (ATI), Lecce, Italy, Sept. 6-8, 2017, Code 130812, doi: https://doi.org/10.1016/j.egypro.2017.08.279, Codice Scopus: 2-s2.0-85030667198 [Google Scholar]
  13. E. Frosina, A. Senatore, D. Buono, G. Monacelli, F. Pintore, Study of the Performance of the Hydraulic Circuit of an Agricultural Machine with a Lumped Parameter Approach, International Review on Modelling and Simulations (IREMOS), 10 (1), pp. 26-36, 2017, doi: https://doi.org/10.15866/iremos.v10i1.11213 [CrossRef] [Google Scholar]
  14. P. Casoli, L. Riccò, F. Campanini, A. Lettini, C. Dolcin, Mathematical model of a hydraulic excavator for fuel consumption predictions, Proceedings of the ASME/BATH Symposium on Fluid Power & Motion Control, Chicago, Illinois, USA, Oct.\ 12-14, 2015, ISBN: 978-0-7918-5723-6. Paper No. FPMC2015-9566, pp. V001T01A035; 10 pages. doi: https://doi.org/10.1115/FPMC2015-9566 [Google Scholar]
  15. A. Bedotti, M. Pastori, P. Casoli, Modelling and energy comparison of system layouts for a hydraulic excavator, 73rd Conference of the Italian Thermal Machines Engineering Association, Pisa, Italy, Sept. 12-14, 2018, Energy Procedia, Vol. 148, pp. 26-33, 2018, ISSN 1876-6102, doi: https://doi.org/10.1016/j.egypro.2018.08.015 [Google Scholar]
  16. A. Bedotti, F. Campanini, M. Pastori, L. Riccò, P. Casoli, Energy saving solutions for a hydraulic excavator, Energy Procedia, Vol. 126, pp. 1099-1106, 2017, doi: https://doi.org/10.1016/j.egypro.2017.08.255 [CrossRef] [Google Scholar]
  17. M. Axin, B. Eriksson, J.O. Palmberg, Energy Efficient Load Adapting System without Load Sensing: Design and Evaluation, Proceedings of the 11th Scandinavian International Conference on Fluid Power, Linköping, Sweden, Jun. 2-4, 2009 [Google Scholar]
  18. M. Borghi, B. Zardin, F. Belluzzi, L. Lanzoni, Mission Profile for Agricultural Tractors: a focus on Hydraulic Circuit, Proceedings of 67th ATI National Congress, Trieste, Italy, 2012, ISBN: 9788890767609. [Google Scholar]
  19. M. Borghi, B. Zardin, F. Gherardini, N. Zanasi, Modelling and Simulation of a Hydrostatic Steering System for Agricultural Tractors, Energies 2018, 11(1), 230, doi; https://doi.org/10.3390/en11010230 [Google Scholar]
  20. P. Casoli, A. Vacca, A. Anthony, G.L. Berta, Numerical and Experimental Analysis of the Hydraulic Circuit for the Rear Hitch Control in Agricultural Tractors, 7th International Fluid Power Conference, Aachen, Germany, Mar. 22-24, 2010, Vol. 1, pp. 51-63, ISBN 978-3-940565-90-7 [Google Scholar]
  21. M. Borghi, B. Zardin, F. Pintore, A. Benevelli, F. Belluzzi, R. Morselli, Modelling and Simulation of the Hydraulic Circuit of an Agricultural Tractor, Proceedings of the 8th FPNI Ph.D Symposium on Fluid Power, Lappeenranta, Finland. Jun. 11-13, 2014, V001T04A004, ASME, doi: https://doi.org/10.1115/FPNI2014-7848 [Google Scholar]
  22. M. Axin, B. Eriksson, P. Krus, Flow Versus Pressure Control Of Pumps In Mobile Hydraulic Systems, Proceedings of the Institution of Mechanical Engineers, Part I: Journal of Systems and Control Engineering, 228(4), pp. 245–256, 2014, doi: https://doi.org/10.1177/0959651813512820 [Google Scholar]
  23. https://www.plm.automation.siemens.com/global/it/products/simcenter-amesim.html, Simcenter Amesim, 2020 [Google Scholar]

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