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ANALYSIS OF ENERGY SAVING IN HYDRAULIC SYSTEMS


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ANALYSIS OF ENERGY SAVING IN HYDRAULIC SYSTEMS

Kaynakça KAYNAKÇA Aly, A. A., Salem, F. A. & Hanafy, T. O. S. (2014). Energy saving strategies of an efficient electro-hydraulic circuit (A Review). International Journal of Control, Automation and Systems, 3 (3), 6-10. Chapple, P. (2003). Principles of Hydraulic System Design, Coxmoor Pub. Company, UK. Drumea, P. (2001). Energy losses in hydraulic systems. Articol Hidrolica digitala-iasi, FLUIDAS, Bucuresti, Romania, 1-10. Ergür, H. S. (2018). Hidrolik sistemlerdeki enerji verimliliği, Uludağ Üniversitesi Mühendislik Fakültesi Dergisi, 23 (2), 1-14. Hong, Q., Zhang, B., Yang, H., Ma, J. & Fung, R. (2017). Performance analysis of a high-speed on/off valve based on an intelligent pulse-width modulation control. Advances in Mechanical Engineering, 9 (11), 1-11. Huova, M., Aalto, A., Linjama, M. & Huhtala, K. (2017). Study of energy losses in digital hydraulic multi-pressure actuator. The 15th Scandinavian International Conference on Fluid Power, SICFP’17, June 7-9, Linköping, Sweeden, 214-223. Janik, M. & Hruzík L. (2016). Energy saving solutions for hydraulic circuits, AIP Conference Proceedings, September 23, 1768 (020030), 1-6. Jaroslaw, S. & Urszula, W. (2020). Advances in Hydraulic and Pneumatic Drives and Control, Springer Nature, Trzebieszowice, Poland. Khan, Q. S. (1996). Study of Hydraulic Circuit, Tanveer Publications, India. Lin, Z. C. & Shen, C. C. (1994). An investigation of an expert system for hydraulic circuit design with learning. Artifical Intelligence in Engineering, 9 (1995), 153-165. Mirzaliev, S. (2018) A review of energy saving techniques in mobile hydraulic machines. Computer Science. 1-10. Preprint, doi: 10.20944/preprints201810.0193.v1 Plöckinger, A., Scheidl, R. & Winkler, B. (2009). Performance, durability and applications of a fast switching valve. Proceedings of the Second Workshop on Digital Fluid Power Symposium, Linz, Austria, 12–13 November, 129–143. Rydberg, E. K. (2015). Energy efficient hydraulics-System solutions for loss minimization. National Conference on Fluid Power, Linköping University, Sweeden, 16-17 March, 1-9. Rydberg, E. K. (2007). Design of energy efficient hydraulic systems-system concepts and control aspects. Proceedings of ISFP: 5th International. Symposium on Fluid Power Transmission and Control, Beidaihe, China, June 6-8, 1-7. Rydberg, K. (2002). Concepts and development trends for efficiency improvement of hydrostatics in mobile applications. SAE Technical Paper –2002-01-1422, 1-10. Shang T. (2004). Improving Performance of an Energy Efficient Hydraulic Circuit. Master Thesis, University of Saskatchewan, Saskaton, Kanada. Tanaka, H. (1992). Digital Control and Application of Hydraulic and Pneumatic, Chongqing University Press, Chongqing, China. Vacca, A. (2018). Energy efficiency and controllability of fluid power systems. Energies, MDPI, 11 (1169), 1-6. Zöppig, V. & Neumann, K. (2010). Switching magnetic valve electronics. Proceedings of the 7th International Fluid Power Conference (7th IFK), Aachen, Germany, 22–24 March, 2, 407–418.

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