Linear Quadratic Optimal Regulator for Steady State Drifting of Rear Wheel Drive Vehicle
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[1] Efstathios Velenis,et al. Modeling aggressive maneuvers on loose surfaces: The cases of Trail-Braking and Pendulum-Turn , 2007, 2007 European Control Conference (ECC).
[2] Mujahid Abdulrahim,et al. On the Dynamics of Automobile Drifting , 2006 .
[3] Hans B. Pacejka,et al. Tyre Modelling for Use in Vehicle Dynamics Studies , 1987 .
[4] Ronnapee Chaichaowarat,et al. Dynamics and Simulation of RWD Vehicles Drifting at Steady State using BNP-MNC Tire Model , 2013 .
[5] Kazuo Tanaka,et al. A Simple, Natural and Effective Framework of Nonlinear Systems Control and its Application to Aerial Robots , 2014, J. Robotics Mechatronics.
[6] P. Tsiotras,et al. Aggressive maneuvers on loose surfaces: Data analysis and input parametrization , 2007, 2007 Mediterranean Conference on Control & Automation.
[7] E. Velenis,et al. Minimum Time vs Maximum Exit Velocity Path Optimization During Cornering , 2005, Proceedings of the IEEE International Symposium on Industrial Electronics, 2005. ISIE 2005..
[8] Emilio Frazzoli,et al. On steady-state cornering equilibria for wheeled vehicles with drift , 2009, Proceedings of the 48h IEEE Conference on Decision and Control (CDC) held jointly with 2009 28th Chinese Control Conference.
[9] Ronnapee Chaichaowarat,et al. Optimal Control for Steady State Drifting of RWD Vehicle , 2013 .
[10] Emilio Frazzoli,et al. Steady-state drifting stabilization of RWD vehicles , 2011 .
[11] Raymond M. Brach,et al. The Tire-Force Ellipse (Friction Ellipse) and Tire Characteristics , 2011 .
[12] T D Gillespie,et al. Fundamentals of Vehicle Dynamics , 1992 .
[13] Masaharu Nishimura,et al. Vehicle Yaw Control Using an Active Front Steering System with Measurements of Lateral Tire Forces , 2011, J. Robotics Mechatronics.