Path-Following Control of Autonomous Vehicles Considering Coupling Effects and Multi-source System Uncertainties
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Li, K., Chen, T., Luo, Y., Wang, J.: Intelligent environment-friendly vehicles: concept and case studies. IEEE Trans. Intell. Transp. Syst. 13(1), 318–328 (2012)
Hu, X., Chen, L., Tang, B., Cao, D., He, H.: Dynamic path planning for autonomous driving on various roads with avoidance of static and moving obstacles. Mech. Syst. Signal Process. 100, 482–500 (2018)
Wang, H., Huang, Y., Khajepour, A., Cao, D., Lv, C.: Ethical decision-making platform in autonomous vehicles with lexicographic optimization based model predictive controller. IEEE Trans. Veh. Technol. 69(8), 8164–8175 (2020)
Gaining, H., Weiping, F., Wen, W., et al.: The lateral tracking control for the intelligent vehicle based on adaptive PID neural network. Sensors 17(6), 1244–1258 (2017)
Hajjaji, A.E., Bentalba, S.: Fuzzy path tracking control for automatic steering of vehicles. Robot. Auton. Syst. 43(4), 202–213 (2003)
Arogeti, S., Berman, N.: Path following of autonomous vehicles in the presence of sliding effects. IEEE Trans. Veh. Technol. 61(4), 1481–1492 (2012)
Kapania, N., Gerdes, J.: Design of a feedback-feedforward steering controller for accurate path tracking and stability at the limits of handling. Veh. Syst. Dyn. 53(12), 1687–1704 (2015)
Wang, Y., Ding, H., Yuan, J., Chen, H.: Output-feedback triple-step coordinated control for path following of autonomous ground vehicles. Mech. Syst. Signal Process. 116(12), 146–159 (2019)
Liu, K., Gong, J., Chen, S., Zhang, Y., Chen, H.: Model predictive stabilization control of high-speed autonomous ground vehicles considering the effect of road topography. Appl. Sci. 8(5), 822–837 (2018)
Guo, J., Luo, Y., Li, K., Dai, Y.: Coordinated path-following and direct yaw-moment control of autonomous electric vehicles with sideslip angle estimation. Mech. Syst. Signal Pr. 105, 183–199 (2018)
Ji, J., Khajepour, A., Melek, W., Huang, Y.: Path planning and tracking for vehicle collision avoidance based on model predictive control with multiconstraints. IEEE Trans. Veh. Technol. 66(2), 952–964 (2017)
Guo, H., Cao, D., Chen, H., Sun, Z., Hu, Y.: Model predictive path following control for autonomous cars considering a measurable disturbance: Implementation, testing, and verification. Mech. Syst. Signal Process. 118, 41–60 (2019)
Hu, C., Wang, R., Yan, F., Chen, N.: Should the desired heading in path following of autonomous vehicles be the tangent direction of the desired path? IEEE Trans. Intell. Transp. 16(6), 3084–3094 (2015)
Hu, C., Wang, R., Yan, F., Chen, N.: Output constraint control on path following of four-wheel independently actuated autonomous ground vehicles. IEEE Trans. Veh. Technol. 65(6), 4033–4043 (2016)
Hedrick, J., Swaroop, D.: Dynamic coupling in vehicle under automatic control. Veh. Syst. Dyn. 23(S1), 209–220 (1994)
Lim, E. H., Hedrick, J. K.: Lateral and longitudinal vehicle control coupling for automated vehicle operation. Paper presented at American Control Conference, San Diego, CA, 2-4 June 1999
Lee, H., Tomizuka, M.: Coordinated longitudinal and lateral motion control of vehicles for IVHS. J. Dyn. Syst. Meas. Control-Trans. ASME. 123(3), 535–543 (2001)
Rajamani, R., Tan, H., Law, B., Zhang, W.: Demonstration of integrated longitudinal and lateral control for the operation of automated vehicles in platoons. IEEE Trans. Control Syst. Technol. 8(4), 695–708 (2000)
Kumarawadu, S., Lee, T.T.: Neuroadaptive combined lateral and longitudinal control of highway vehicles using RBF networks. IEEE Trans. Intell. Transp. 7(4), 500–512 (2006)
Guo, J., Li, K., Luo, Y.: Coordinated control of autonomous four wheel drive electric vehicles for platooning and trajectory tracking using a hierarchical architecture. J. Dyn. Syst. Meas. 137(10), 1–18 (2015)
Attia, R., Orjuela, R., Basset, M.: Combined longitudinal and lateral control for automated vehicle guidance. Veh. Syst. Dyn. 52(2), 261–279 (2014)
Guo, J., Luo, Y., Li, K.: Robust gain-scheduling automatic steering control of unmanned ground vehicles under velocity-varying motion. Veh. Syst. Dyn. 57(4), 595–616 (2019)
Hu, C., Jing, H., Wang, R., Yan, F., Chadli, M.: Robust H∞ output-feedback control for path following of autonomous ground vehicles. Mech. Syst. Signal Process. 70(71), 414–427 (2015)
Wang, R., Jing, H., Hu, C., Yan, F., Chen, N.: Robust H∞ path following control for autonomous ground vehicles with delay and data dropout. IEEE Trans. Intell. Transp. Syst. 17(7), 2042–2050 (2016)
Li, L., Lu, Y., Wang, R., Chen, J.: A three-dimensional dynamics control framework of vehicle lateral stability and rollover prevention via active braking with MPC. IEEE Trans. Intell. Transp. Syst. 64(4), 3389–3401 (2017)
Rajamani, R.: Vehicle Dynamics and Control. Springer, Boston (2006)
Chen, Y., Wang, J.: Adaptive energy-efficient control allocation for planar motion control of over-actuated electric ground vehicles. IEEE Trans. Control Syst. Technol. 22(4), 1362–1373 (2014)
Brown, M., Funke, J., Erlien, S.M., Gerdes, J.C.: Safe driving envelopes for path tracking in autonomous vehicles. Control Eng. Pract. 61, 307–316 (2017)
Ni, J., Hu, J.: Dynamics control of autonomous vehicle at driving limits and experiment on an autonomous formula racing car. Mech. Syst. Signal Process. 90, 154–174 (2017)
Zhang, H., Zhang, X., Wang, J.: Robust gain-scheduling energy-to-peak control of vehicle lateral dynamics stabilization. Veh. Syst. Dyn. 52(3), 309–340 (2014)
Wang, R., Zhang, H., Wang, J., Yan, F., Chen, N.: Robust lateral motion control of four-wheel independently actuated electric vehicles with tire force saturation consideration. J. Frankl. Inst.-Eng. Appl. Math. 352(2), 645–668 (2015)
Jing, H., Wang, R., Wang, J., Chen, N.: Robust H∞ dynamic output-feedback control for four-wheel independently actuated electric ground vehicles through integrated AFS/DYC. J. Frankl. Inst.-Eng. Appl. Math. 355(18), 9321–9350 (2018)
Bobier, G., Gerdes, C.: Staying within the nullcline boundary for vehicle envelope control using a sliding surface. Veh. Syst. Dyn. 51(2), 199–217 (2012)
Fei, J., Ding, H.: Adaptive sliding mode control of dynamic system using RBF neural network. Nonlinear Dyn. 70(2), 1563–1571 (2018)
Li, B., Du, H., Li, W.: A potential field approach-based trajectory control for autonomous electric vehicles with in-wheel motors. IEEE Trans. Intell. Transp. Syst. 18(8), 2044–2055 (2017)
Wang, Y., Fujimoto, H., Hara, S.: Driving force distribution and control for ev with four in-wheel motors: a case study of acceleration on split-friction surfaces. IEEE Trans. Ind. Electron. 64(4), 3380–3388 (2017)
Liang, Y., Li, Y., Yu, Y., Zheng, L.: Integrated lateral control for 4WID/4WIS vehicle in high-speed condition considering the magnitude of steering. Veh. Syst. Dyn. 58(11), 1711–1735 (2020)
Falcone, P., et al.: Integrated braking and steering model predictive control approach in autonomous vehicles. IFAC Proc. Vol. 40(10), 273–278 (2007)
Liang, Y., Li, Y., Khajepour, A., Zheng, L.: Holistic adaptive multi-model predictive control for the path following of 4WID autonomous vehicles. IEEE Trans. Veh. Technol. 70(1), 69–81 (2021)
Ding, F., Jin, H.: On the optimal speed profile for eco-driving on curved roads. IEEE Trans. Intell. Transp. Syst. 19(12), 4000–4010 (2018)