Rotating Machinery, Hybrid Test Methods, Vibro-Acoustics & Laser Vibrometry, Volume 8

142 G. Quattromani et al. References 1. Walter, A., Kiencke, U., Jones, S., Winkler, T.: Anti-jerk & idle speed control with integrated sub-harmonic vibration compensation for vehicles with dual mass flywheels. SAE Int. J. Fuels Lubr. 1, 1267–1276 (2009) 2. Walter, A., Kiencke, U., Jones, S., Winkler, T.: Misfire detection for vehicles with Dual Mass Flywheel (DMF) based on reconstructed engine torque. SAE Technical Paper (2007) 3. Lei, C., Ming-Ran, D., Zhengfeng, J.: Optimization method of performance parameters of dual mass flywheel. Trans. CSICE (30), 277–283 (2012) 4. Albers, A.: Advanced development of Dual Mass Flywheel (DMFW) design. In: 5th Luk Symposium, Bühl, 1994 5. C. Lei, Z. Rong, Z Jiang. Nonlinear dynamical model of an automotive dual mass flywheel. Adv. Mech. Eng., vol. VII, n. 6, pp. 1–11, 2015. 6. Cheli, F., Pennestrì, E.: Cinematica e dinamica dei sistemi multibody 1-2, Casa Editrice Ambrosiana, 2006 7. Cheli, F., Diana, G.: Advanced Dynamics of Mechanical Systems. Springer, Berlin (2015) 8. Schaper, U., Sawodny, O., Mahl, T., Blessing, U.: Modeling and torque estimation of an automotive dual mass flywheel. In: American Control Conference, St. Louis, 2009 9. D. Karnopp, Computer simulation of stick-slip friction in mechanical dynamic systems, J. Dyn. Syst. Meas. Control., vol. CVII, n. 1, pp. 100–103, 1985. 10. Flores, P., Pimenta Claro, J., Lankarani, H.: A comparative study on continuous force models for constrained multibody systems. In: Multibody Dynamics ECCOMAS, Brussels, 2011 11. Wriggers, P.: Computational Contact Mechanics. Springer, Berlin (2006)

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