Browse > Article
http://dx.doi.org/10.9726/kspse.2013.17.5.128

A Study on the Modeling of Transient Response in Automated Manual Transmission for Hybrid Trucks  

Park, Kyung-Min (Project Planning Team, Jeonbuk Institute of Automotive Technology)
Ko, Young-Jin (Advanced Technology Research Team, Jeonbuk Institute of Automotive Technology)
Publication Information
Journal of Power System Engineering / v.17, no.5, 2013 , pp. 128-137 More about this Journal
Abstract
Modern transmission technologies such as automated manual transmission(AMT) and dual clutch transmission(DCT) are interested to all manufactures due to their fuel efficiency and driver's convenience, especially in a hybrid system. AMT has advantages in that they have a high efficiency of manual transmissions(MT) and offer operation convenience similar to automatic transmissions(AT), but it has some disadvantages in that they have torque gap during gear shift and shift time. To reduce disadvantages, it is necessary to evaluate errors and characteristics as a developing simulation model before experimental verification. The purpose of this study is to develop virtual components and simulate the transient response of AMT. A dynamic AMT model and a control logic for an integrated vehicle model have been developed using Matlab/Simulink as a simulation platform. In this paper, the clutch model to describe the stick-slip transition mode and the transmission model to describe the neutral gear shifting is introduced and compared with each other.
Keywords
Automatic Manual Transmission; Clutch; Virtual Component; Cear Shifting; Hybrid Truck;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Argonne National Lab. PSAT User's Guide.
2 B. S. Lee, 2008, "Automotive Manual Transmis sion Clutches System Modeling for Foot Effort Hysteresis Characteristics Prediction", Transactions of KSAE, Vol. 16, pp. 164-170.
3 ASM Vehicle Dynamics Reference User's Guide.
4 B. S. Lee, H. M. Shin and M. D. Hur, 2004, "Study on a Full-Size Tester for Manual Transmission Clutches", Transactions of KSAE, Vol. 12, pp. 101-109.
5 B. Kremmling and R. Fischer, 1998, " The Automated Clutch-The New Luk ECM", 6th International Luk Symposium, pp. 85-106.
6 C. H. Tseng and M. F. Hsieh, 2005, "Analysis and Optimization of Clutch Actuator on Automated Manual Transmission System," SAE 2005 Word Congress, SP 2005-01-178.
7 Y. O. Joo and S. S. Chang, "Development of Automated Mechanical Transmission Model to Evaluate TCU Control", Journal of the Korean Society for Precision Engineering, Vol. 27, No. 3, pp. 118-126   과학기술학회마을
8 J. H. Park, W. J. Jang, S. T. Cho, J. M. Lee, H. S. Cho, 1996, "A Study on the dynamic characteristics of automated transmission clutch", Korean Society of Precision Engineering, pp. 325-329
9 M. S. Kim, C. W. Shin, W. S. Lim and S. K. Cha, 2010, "Development of Dry Clutch Dynamic Performance Model in a Commercial Vehicle", KSAE Annual Conference, pp. 1512-1517