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Najt, P.M.1
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Homogeneous charge compression ignition (HCCI) engines
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The potential of HCCI combustion for high efficiency and low emissions
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Number 2002-01-1923, Jun
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K. Epping, S. Aceves, R. Bechtold, and J. Dec. The potential of hcci combustion for high efficiency and low emissions. Number 2002-01-1923. SAE, Jun 2002.
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R. H. Stanglmaier and C. E. Roberts. Homogeneous charge compression ignition (hcci): Benefits, compromises, and future engine applications. Number 1999-01-3682. SAE, Oct 1999.
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5
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Study of high load operation limit expansion for gasoline compression ignition engines
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K. Yoshizawa, A. Teraji, H. Miyakubo, K. Yamaguchi, and T. Urushihara. Study of high load operation limit expansion for gasoline compression ignition engines. Journal of Engineering for Gas Turbines and Power, 128(2):377-387, 2006.
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On the nature of cyclic dispersion in spark assisted hcci combustion
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Number 2006-01-0418
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R. M. Wagner, K. D. Edwards, C. S. Daw, J. B. Green Jr., and B. G. Bunting. On the nature of cyclic dispersion in spark assisted hcci combustion. Number 2006-01-0418. SAE, 2006.
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Daw, C.S.3
Green Jr., J.B.4
Bunting, B.G.5
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9
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N. Ravi, M. J. Roelle, H.-H. Liao, A. F. Jungkunz, C.-F. Chang, S. Park, and J. C. Gerdes. Model-based control of hcci engines using exhaust recompression. IEEE Trans. on Control Systems Technology, 18:1289-1302, Nov 2010.
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J. Bengtsson, P. Strandh, R. Johansson, P. Tunestal, and B. Johansson. Closed-loop combustion control of homogeneous charge compression ignition (hcci) engine dynamics. International Journal of Adaptive Control and Signal Processing, 18(2):167-179, 2004.
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M. J. Roelle, N. Ravi, A. F. Jungkunz, and J. C. Gerdes. A dynamic model of recompression hcci combustion including cylinder wall temperature. In IMECE, volume 2006, pages 415-424. ASME, 2006.
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Control of exhaust recompression hcci using hybrid model predictive control
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