최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
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NTIS 바로가기International journal of automotive technology, v.21 no.5, 2020년, pp.1195 - 1205
Park, Jinrak , Choi, Seibum , Oh, Jiwon , Eo, Jeongsoo
초록이 없습니다.
J. Dynamic Systems, Measurement, and Control P Azzoni 119 614 1997 10.1115/1.2802369 Azzoni, P. (1997). Reconstruction of indicated pressure waveform in a spark-ignition engine from block vibration measurements. J. Dynamic Systems, Measurement, and Control, 119, 614-619.
J. Dynamic Systems, Measurement, and Control D Cho 111 568 1989 10.1115/1.3153093 Cho, D. and Hedrick, J. K. (1989). Automotive powertrain modeling for control. J. Dynamic Systems, Measurement, and Control, 111, 568-576.
Mechanical Systems and Signal Processing Y Gao 13 5 709 1999 10.1006/mssp.1999.1229 Gao, Y. and Randall, R. (1999). Reconstruction of diesel engine cylinder pressure using a time domain smoothing technique, Mechanical Systems and Signal Processing 13, 5, 709-722.
10.1109/TMECH.2018.2793351 Kim, J., Choi, S. B. and Oh, J. (2018). Adaptive engagement control of a self-energizing clutch actuator system based on robust position tracking. IEEE/ASME Trans. Mechatronics.
Mechanism and Machine Theory S Kim 121 633 2018 10.1016/j.mechmachtheory.2017.11.008 Kim, S. and Choi, S. (2018). Control-oriented modeling and torque estimations for vehicle driveline with dual-clutch transmission. Mechanism and Machine Theory, 121, 633-649.
Mechanism and Machine Theory S Kim 113 109 2017 10.1016/j.mechmachtheory.2017.02.013 Kim, S., Oh, J. and Choi, S. (2017). Gear shift control of a dual-clutch transmission using optimal control allocation. Mechanism and Machine Theory, 113, 109-125.
J. Dynamic Systems, Measurement, and Control Y W Kim 121 487 1999 10.1115/1.2802500 Kim, Y. W., Rizzoni, G. and Wang, Y.-Y. (1999). Design of an IC engine torque estimator using unknown input observer. J. Dynamic Systems, Measurement, and Control, 121, 487-495.
IEEE Trans. Vehicular Technology J Na 67 1 409 2018 10.1109/TVT.2017.2737440 Na, J., Chen, A. S., Herrmann, G., Burke, R. and Brace, C. (2018). Vehicle engine torque estimation via unknown input observer and adaptive parameter estimation. IEEE Trans. Vehicular Technology, 67, 1, 409-422.
Int. J. Automotive Technology J Oh 18 125 2017 10.1007/s12239-017-0013-9 Oh, J., Choi, S., Chang, Y. and Eo, J. (2017a). Engine clutch torque estimation for parallel-type hybrid electric vehicles. Int. J. Automotive Technology, 18, 125-135.
IEEE/ASME Trans. Mechatronics J J Oh 20 24 2015 10.1109/TMECH.2014.2307591 Oh, J. J. and Choi, S. B. (2015). Real-time estimation of transmitted torque on each clutch for ground vehicles with dual clutch transmission. IEEE/ASME Trans. Mechatronics, 20, 24-36.
IEEE Trans. Control Systems Technology J J Oh 25 5 1856 2017 10.1109/TCST.2016.2620421 Oh, J. J., Eo, J. S. and Choi, S. B. (2017b). Torque observer-based control of self-energizing clutch actuator for dual clutch transmission. IEEE Trans. Control Systems Technology, 25, 5, 1856-1864.
Int. J. Engine Research R Potenza 8 4 379 2007 10.1243/14680874JER00507 Potenza, R., Dunne, J. F., Vulli, S. and Richardson, D. (2007). A model for simulating the instantaneous crank kinematics and total mechanical losses in a multicylinder in-line engine. Int. J. Engine Research, 8, 4, 379-397.
Mechanical Systems and Signal Processing G Rizzoni 8 275 1994 10.1006/mssp.1994.1021 Rizzoni, G. and Zhang, Y. (1994). Identification of a non-linear internal combustion engine model for on-line indicated torque estimation. Mechanical Systems and Signal Processing, 8, 275-287.
Expert Systems with Applications A-M Shamekhi 42 12 5192 2015 10.1016/j.eswa.2015.02.031 Shamekhi, A.-M. and Shamekhi, A. H. (2015). A new approach in improvement of mean value models for spark ignition engines using neural networks. Expert Systems with Applications, 42, 12, 5192-5218.
10.15866/iremos.v7i3.872 Siano, D. and D’Agostino, D. (2014). Vibrational signals processing for in-cylinder pressure reconstruction of a four cylinder spark ignition engine. Modelling and Simulations, 510.
IEEE Trans. Control Systems Technology K Van Berkel 22 4 1241 2014 10.1109/TCST.2013.2279935 Van Berkel, K., Veldpaus, F., Hofman, T., Vroemen, B. and Steinbuck, M. (2014). Fast and smooth clutch engagement control for a mechanical hybrid powertrain. IEEE Trans. Control Systems Technology, 22, 4, 1241-1254.
Control Engineering Practice A Yar 70 63 2018 10.1016/j.conengprac.2017.09.020 Yar, A., Bhatti, A. I. and Ahmed, Q. (2018). First principle based control oriented model of a gasoline engine including multi-cylinder dynamics. Control Engineering Practice, 70, 63-76.
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