TY - JOUR
T1 - G-G Diagram Generation Based on Phase Plane Method and Experimental Validation for FSAE Race Car
AU - Ni, Jun
AU - Hu, Jibin
AU - Li, Xueyuan
AU - Xu, Bin
AU - Zhou, Junjie
N1 - Publisher Copyright:
© 2016 SAE International.
PY - 2016
Y1 - 2016
N2 - In order to discuss the limit handling performance of a FSAE race car, a method to generate the G-G diagram was proposed based on phase plane concept. The simulated G-G diagram was validated by experiments with an electric FSAE race car. In section 1, a nonlinear 7 DOFs dynamic model of a certain electric FSAE race car was built. The tire mechanical properties were described by Magic Formula, and the tire test data was provided by FSAE TTC. In section 2, firstly the steady-state yaw rate response was discussed in different vehicle speed and lateral acceleration based on the simulations. Then the method to generate the G-G diagram based on phase plane concept was proposed, and the simulated G-G diagram of a certain FSAE race car was obtained. In section 3, the testbed FSAE race car was described, including the important apparatuses used in the experiments. Based on the race track experiment, the G-G diagram of the race car was obtained. The comparison between simulated and actual G-G diagram shows that, the phase plane method provides an efficient way to generate the G-G diagram.
AB - In order to discuss the limit handling performance of a FSAE race car, a method to generate the G-G diagram was proposed based on phase plane concept. The simulated G-G diagram was validated by experiments with an electric FSAE race car. In section 1, a nonlinear 7 DOFs dynamic model of a certain electric FSAE race car was built. The tire mechanical properties were described by Magic Formula, and the tire test data was provided by FSAE TTC. In section 2, firstly the steady-state yaw rate response was discussed in different vehicle speed and lateral acceleration based on the simulations. Then the method to generate the G-G diagram based on phase plane concept was proposed, and the simulated G-G diagram of a certain FSAE race car was obtained. In section 3, the testbed FSAE race car was described, including the important apparatuses used in the experiments. Based on the race track experiment, the G-G diagram of the race car was obtained. The comparison between simulated and actual G-G diagram shows that, the phase plane method provides an efficient way to generate the G-G diagram.
UR - http://www.scopus.com/inward/record.url?scp=85072350595&partnerID=8YFLogxK
U2 - 10.4271/2016-01-0174
DO - 10.4271/2016-01-0174
M3 - Conference article
AN - SCOPUS:85072350595
SN - 0148-7191
JO - SAE Technical Papers
JF - SAE Technical Papers
T2 - SAE 2016 World Congress and Exhibition
Y2 - 12 April 2016 through 14 April 2016
ER -