References
- M. S. Graham, S. Crossley, T. Harcombe, N. Keeler and T. Williams, Beyond Euro VI - Development of A Next Generation Fuel Injector for Commercial Vehicles, SAE paper 2014-01-1435, 2014.
- S. Matsumoto, C. Klose, J. Schneider, N. Nakane, D. Ueda and S. Kondo, 4th Generation Diesel Common Rail System: Realizing Ideal Structure Function for Diesel Engine, SAE paper 2013-01-1590, 2013.
- V. Macian, R. Payri, S. Ruiz, M. Bardi and A. H. Plazas, Experimental study of the relationship between injection rate shape and Diesel ignition using a novel piezo-actuated direct-acting injector, Applied Energy, Vol. 118, pp. 100-113, 2014. https://doi.org/10.1016/j.apenergy.2013.12.025
- J. Schommers, F. Duvinage, M. Stotz, A. Peters, S. Ellwanger, K. Koyanagi and H. Gildein, Potential of common rail injection system for passenger car DI diesel engines. SAE paper, 2000-01-0944, 2000.
- A. Vanegas, H. Won, C. Felsch, M. Gauding and N. Peters, Experimental investigation of the effect of multiple injections on pollutant formation in a commonrail DI diesel engine. SAE paper, 2008-01-1191, 2008.
- R. Matsui, K. Shimoyama, S. Nonaka, I. Chiba and S. Hidaka, Development of high-performance diesel engine compliant with Euro-V. SAE paper, 2008-01-1198, 2008.
- Y. Hotta, M. Inayoshi, K. Nakakita, K. Fujiwara and I. Sakata, Achieving Lower Exhaust Emissions and Better Performance in an HSDI Diesel Engine with Multiple Injection. SAE paper No. 2005-01-0928, 2005.
- M. Badami, F. Mallamo, F. Millo and E. E. Rossi, Influence of Multiple Injection Strategies on Emissions, Combustion Noise and BSFC of a DI Common Rail Diesel Engine. SAE Paper No. 2002-01-0503, 2002.
- A. Kato, K. Matsuura, T. Hakozaki, O. Suzuki, S. Haraguchi, Y. Yoshimi, T. Katano and T. Hashimoto, Influence of a Fast Injection Rate Common Rail Injector for the Spray and Combustion Characteristics of Diesel Engine, SAE paper No. 2011-01-0687, 2011.
- L. Postrioti, G. Buitoni, F. C. Pesce and C. Ciaravino, Zeuch method-based injection rate analysis of a common- rail system operated with advanced injection strategies, FUEL, Vol. 128, pp. 188-198, 2014. https://doi.org/10.1016/j.fuel.2014.03.006
- C, Poetsch, Crank-Angle Resolved Modeling of Fuel Injection and Mixing Controlled Combustion for Real- Time Application In Steady-State and Transient Operation, SAE Paper No. 2014-01-1095, 2014.
- W. Zeuch, Neue Verfahren zur Messung des Einspritzgesetzes und Einspritz-Regelmassigkeit von Diesel- Einspritz-pumpen, MZT, Jahr. 22 Heft 9, 1961.
- Y. Roh and K. Cho, Development of multi-channel common rail diesel injector driver, KSAE fall conference, pp. 274-279, 2004.
- K. R. Cho, Korea Institute of Electronic Communication Science Journal, Development of Injector Controller, Vol. 8, No. 2, pp. 279-284, 2013.
- M. S. Graham, S. Crossley, T. Harcombe, N. Keeler and T. Williams, Beyond Euro VI - Development of A Next Generation Fuel Injector for Commercial Vehicles, SAE paper 2014-01-1435, 2014.
- G. Chiatti, O. Chiavola, M. Palazzoni and F. Palmieri, Diesel Spray Modeling Under Off-Axis Needle Displacement, 2015-01-922, 2015.
- W. Bosch, The Fuel Rate Indicator: A New Measuring Instrument for Display of the Characteristics of Individual Injection, SAE Paper 660749,1966.
- J. G. Kim, Driver for Diesel common rail pressure control and injector using a micro-controller, MS Thesis, Seoul National University of Science and Technology, 2016.