Hierarchical CNNPID Based Active Steering Control Method for Intelligent Vehicle Facing Emergency Lane-Changing
Tóm tắt
Từ khóa
Tài liệu tham khảo
G Tiwari, D Mohan. Transport planning and traffic safety: making cities, roads, and vehicles safer. Boca Raton: Taylor & Francis Group: The CRC Press, 2016.
F Wang, D F Araújo, Y F Li. Reliability assessment of autonomous vehicles based on the safety control structure. Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability, 2023, 237(2): 389-404.
Z X Shi, J B Feng, Y X Wang. Design of vehicle steering lane change control system based on ANFIS and MPC. Modern Manufacturing Engineering, 2022, 2: 70-78.
P Bansal, K M Kockelman. Forecasting Americans’ long-term adoption of connected and autonomous vehicle technologies. Transportation Research Part A: Policy and Practice, 2017, 95: 49-63.
P Jiang, Z Q Shen, R X Xu. Preface: Key technologies for enhancing the performance of FAST. Research in Astronomy and Astrophysics, 2020, 20(5): 3-4.
E D Çetinoğlu, A G Dilektaşlı, N A Demir. The relationship between driving simulation performance and obstructive sleep apnoea risk, daytime sleepiness, obesity and road traffic accident history of commercial drivers in Turkey. Sleep & Breathing, 2015, 19: 865-872.
M Guo, S Li, L Wang, et al, Research on the relationship between reaction ability and mental state for online assessment of driving fatigue. International Journal of Environmental Research & Public Health, 2016, 13: 11-74.
Y Wang, K Chen, L Hu. Killer tailgating: Recommendation of traveling intervals between consecutive motor vehicles for rear-end collision avoidance. Arabian Journal for Science & Engineering, 2012, 37: 619-630.
A Tawari, S Martin, M M Trivedi. Continuous head movement estimator for driver assistance: issues, algorithms, and on-road evaluations. IEEE Transactions on Intelligent Transportation Systems, 2014, 15(2): 818-830.
W Zhang, C Y Zhang, W Li. Intelligent path tracking control for plant protection robot based on fuzzy PD. International Conference on Advanced Robotics and Mechatronics IEEE, Hefei, China, August, 2017: 27–31.
L Song, H Guo, F Wang, et al. Model predictive control oriented shared steering control for intelligent vehicles. 29th Chinese Control and Decision Conference (CCDC), Chongqing, China, May 28–30, 2017: 7568–7573.
B A Guvenc, L Guvenc, K Karaman, et al. Robust yaw stability controller design and hardware-in-the-loop testing for a road vehicle. IEEE Transactions on Vehicular Technology, 2014, 58(2): 555-571.
M Yue, X Hou, M Fan, et al. Coordinated trajectory tracking control for an underactuated tractor-trailer vehicle via MPC and SMC approaches. 2nd International Conference on Advanced Robotics and Mechatronics (ICARM), Singapore, July 18–20, 2018: 82–87.
M Kabiri, H Atrianfar, M B Menhaj. Trajectory tracking of a class of under-actuated thrust-propelled vehicle with uncertainties and unknown disturbances. Nonlinear Dynamics, 2017, 90(3): 1695-1706.
C L Wang, C C Hwang, J Y Hung. Path tracking of an automatic ground vehicle with different payloads by hierarchical improved fuzzy dynamic sliding-mode control. IEEE Transactions on Fuzzy Systems, 2017, 26(2): 899-914.
C Zhang, J Hu, J Qiu, et al. A novel fuzzy observer-based steering control approach for path tracking in autonomous vehicles. IEEE Transactions on Fuzzy Systems, 2018, 27(2): 278-290.
F Tian, Z Li, F Y Wang, et al. Parallel learning-based steering control for autonomous driving. IEEE Transactions on Intelligent Vehicles, 2022, 8(1): 379-389.
A D Sabiha, M A Kamel, E Said, et al. ROS-based trajectory tracking control for autonomous tracked vehicle using optimized backstepping and sliding mode control. Robotics and Autonomous Systems, 2022, 152: 104058.
J Liu, P Jayakumar, J L Stein, et al. A study on model fidelity for model predictive control-based obstacle avoidance in high-velocity autonomous ground vehicles. Vehicle System Dynamics, 2016, 54(11): 1629-1650.
A Tealab. Time series forecasting using artificial Neural Network methodologies: A systematic review. Future Computing and Informatics Journal, 2018, 3(2): 334-340.
C Katrakazas, M Quddus, W H Chen, et al. Real-time motion planning methods for autonomous on-road driving: State-of-the-art and future research directions. Transportation Research Part C: Emerging Technologies, 2015, 60: 416-442.
E Lucet, R Lenain, C Grand. Dynamic path tracking control of a vehicle on slippery terrain. Control Engineering Practice, 2015, 42: 60-73.
X Xiong, L Chen, J Liang. A new framework of vehicle collision prediction by combining SVM and HMM. IEEE Transactions on Intelligent Transportation Systems, 2018, 19(3): 1-12.
F Biondi, D L Strayer, R Rossi, et al. Advanced driver assistance systems: Using multimodal redundant warnings to enhance road safety. Applied Ergonomics, 2017, 58: 238-244.
W Peng. Research on optimization and implementation of BP Neural Network Algorithm. 7th International Conference on Intelligent Computation Technology and Automation, Changsha, China, October 25–26, 2014: 104–107.
Y Koubaa, M Boukattaya, T Dammak. Adaptive sliding-mode dynamic control for path tracking of nonholonomic wheeled mobile robot. Journal of Automation and Systems Engineering, 2015, 9(2): 119-131.
Z Shuai, H Zhang, J Wang, et al. Combined AFS and DYC control of Four-wheel-independent-drive electric vehicles over CAN Network with time-varying delays. IEEE Transactions on Vehicular Technology, 2014, 63(2): 591-602.
J Zhang, H Wang, J Zheng, et al. Adaptive sliding mode-based lateral stability control of steer-by-wire vehicles with experimental validation. IEEE Transactions on Vehicular Technology, 2020, 69(9): 9589-9600.
L Hong, Y Sun, C Cao. Motor synchronization control for multistage hot die forging press feed manipulator based on BP-PID controller. International Journal of Computing Science and Mathematics, 2020, 11(4): 347-356.
G Huang, X Yuan, K Shi, et al. A BP-PID controller-based multi-model control system for lateral stability of distributed drive electric vehicle. Journal of the Franklin Institute, 2019, 356(13): 7290-7311.
J Baek, C Kang, W Kim. Practical approach for developing lateral motion control of autonomous lane change system. Applied Sciences, 2020, 10(9): 1-15.
A Wasala, D Byrne, P Miesbauer, et al. Trajectory based lateral control: A Reinforcement Learning case study. Engineering Applications of Artificial Intelligence, 2020, 94(2): 1-13.
Y Jie, Q Wang, L Yuan. An improved second order sliding mode twisting algorithm for finite-time trajectory tracking of intelligent vehicle. Advances in Mechanical Engineering, 2013(4): 1–8.
S Chen, G Xiong, H Chen, et al. MPC-based path tracking with PID velocity control for high-velocity autonomous vehicles considering time-optimal travel. Journal of Central South University, 2020: 1–19.
Z He, L Nie, Z Yin, et al. A two-layer controller for lateral path tracking control of autonomous vehicles. Sensors, 2020, 20(13): 1-20.
C Hu, Z Wang, H Taghavifar, et al. MME-EKF-based path-tracking control of autonomous vehicles considering input saturation. IEEE Transactions on Vehicular Technology, 2019, 68(6): 5246-5259.
C Chen, X Liu, H H Chen, et al. A rear-end collision risk evaluation and control scheme using a Bayesian Network Model. IEEE Transactions on Intelligent Transportation Systems, 2018, 20(1): 1-21.
X Ji, X He, L Chen, et al. Adaptive-neural-network-based robust lateral motion control for autonomous vehicle at driving limits. Control Engineering Practice, 2018, 76: 41-53.
S Xu, H Peng. Design, analysis, and experiments of preview path tracking control for autonomous vehicles. IEEE Transactions on Intelligent Transportation Systems, 2020, 21(1): 48-58.
S Yang, L Xi, J Hao, et al. Aerodynamic-parameter identification and attitude control of Quad-Rotor model with CIFER and adaptive LADRC. Chinese Journal of Mechanical Engineering, 2021, 34(1): 1.
X Tang, Z Zhang, Y Qin. On-road object detection and tracking based on radar and vision fusion: A review. IEEE Intelligent Transportation Systems Magazine, 2021: 2–27.
