Dynamic Trajectory Optimization for 4WIS Vehicles in Unstructured Narrow Environments
JIANG Xiaolong1, LI Yang1,2, TENG Jingjia1, HUANG Wenjie1, QIN Hongmao1,2, HU Manjiang1,2, LI Guofa3, BIAN Yougang1,2
1. College of Mechanical and Vehicle Engineering, Hunan University, Changsha 410082; 2. State Key Laboratory of Advanced Design and Manufacturing Technology for Vehicle, Hunan University, Changsha 410082; 3. College of Mechanical and Vehicle Engineering, Chongqing University, Chongqing 400044
JIANG Xiaolong, LI Yang, TENG Jingjia, HUANG Wenjie, QIN Hongmao, HU Manjiang, LI Guofa, BIAN Yougang. Dynamic Trajectory Optimization for 4WIS Vehicles in Unstructured Narrow Environments[J]. Journal of Mechanical Engineering, 2026, 62(8): 410-431.
[1] GUO J, LUO Y, LI K. An adaptive hierarchical trajectory following control approach of autonomous four-wheel independent drive electric vehicles[J]. IEEE Transactions on Intelligent Transportation Systems, 2018, 19(8): 2482-2492. [2] 赵明慧,郭浩然,张利鹏,等. 四轮独立转向分布式驱动电动汽车单轮转向失效行驶稳定性控制[J]. 机械工程学报, 2024, 60(10): 507-522. ZHAO Minghui, GUO Haoran, ZHANG Lipeng, et al. Driving stability control of four-wheel independent steering distributed drive electric vehicle with single wheel steering failure[J]. Journal of Mechanical Engineering, 2024, 60(10): 507-522. [3] HANG P, CHEN X. Towards autonomous driving: Review and perspectives on configuration and control of four-wheel independent drive/steering electric vehicles[J]. Actuators, 2021, 10(8): 184. [4] CLAUSSMANN L, REVILLOUD M, GRUYER D, et al. A review of motion planning for highway autonomous driving[J]. IEEE Transactions on Intelligent Transportation Systems, 2020, 21(5): 1826-1848. [5] GUO Y, GUO Z, WANG Y, et al. A survey of trajectory planning methods for autonomous driving—Part I : Unstructured scenarios[J]. IEEE Transactions on Intelligent Vehicles, 2024, 9(9): 5407-5434. [6] LIU W, LI Z, LI L, et al. Parking like a human: A direct trajectory planning solution[J]. IEEE Transactions on Intelligent Transportation Systems , 2017, 18(12) : 3388-3397. [7] ZHANG L, LIN Z, WANG J, et al. Rapidly-exploring random trees multi-robot map exploration under optimization framework[J]. Robotics and Autonomous Systems, 2020, 131: 103565. [8] 赵锦涛,李亮,薛仲瑾,等. 基于混合A星的停车场内巡航分层运动规划方法[J]. 机械工程学报, 2023, 59(24): 290-298. ZHAO Jintao , LI Liang , XUE Zhongjin , et al. Hierarchical motion planning method based on hybrid A-star for cruising in parking area[J]. Journal of Mechanical Engineering, 2023, 59(24): 290-298. [9] DE OLIVEIRA C S, TOLEDO R D S, TULUX V H, et al. Trajectory planning for autonomous cars in low-structured and unstructured environments : A systematic review[J]. IEEE Access , 2025, 13: 48841-48871. [10] HAN L, DO Q H, MITA S. Unified path planner for parking an autonomous vehicle based on RRT[C] //2011 IEEE International Conference on Robotics and Automation. 2011: 5622-5627. [11] KARAMAN S , FRAZZOLI E. Sampling-based algorithms for optimal motion planning[C] //IEEE International Conference on Robotics and Automation (ICRA). 2014: 846-894. [12] DOLGOV D, THRUN S, MONTEMERLO M, et al. Practical search techniques in path planning for autonomous driving[J]. An Arbor, 2008, 1001(48105): 18-80. [13] DOLGOV D, THRUN S, MONTEMERLO M, et al. Path planning for autonomous vehicles in unknown semi-structured environments[J]. Int. J. Rob. Res., 2010, 29(5): 485-501. [14] LEI Y, WANG Y, WU S, et al. A fuzzy logic-based adaptive dynamic window approach for path planning of automated driving mining truck[C] //2021 IEEE International Conference on Mechatronics (ICM). 2021: 1-6. [15] LI B, SHAO Z. Simultaneous dynamic optimization: A trajectory planning method for nonholonomic car-like robots[J]. Advances in Engineering Software, 2015, 87: 30-42. [16] KOUHI H, MORADI A. Multiple-vehicle cooperative autonomous parking trajectory planning using connected fifth degree polynomials and genetic algorithm optimization[J]. IEEE Transactions on Intelligent Vehicles, 2024: 1-10. [17] FASSBENDER D, HEINRICH B C, WUENSCHE H J. Motion planning for autonomous vehicles in highly constrained urban environments[C] //Proc. of the 2016 IEEE/RSJ International Conference on Intelligent Robots and System (IROS), Daejeon, Korea (South), 2016: 4708-4713. [18] TENG J, LI Y, YANG Z, et al. User preference-aware and efficient trajectory planning for autonomous parking with hybrid a* and nonlinear optimization[C] //2024 IEEE 27th International Conference on Intelligent Transportation Systems (ITSC), 2024: 1090-1097. [19] LI B , ACARMAN T , ZHANG Y , et al. Optimization-based trajectory planning for autonomous parking with irregularly placed obstacles: A lightweight iterative framework[J]. IEEE Transactions on Intelligent Transportation Systems, 2022, 23(8): 11970-11981. [20] LIAN J, REN W, YANG D, et al. Trajectory planning for autonomous valet parking in narrow environments with enhanced hybrid a* search and nonlinear optimization[J]. IEEE Transactions on Intelligent Vehicles, 2023, 8(6): 3723-3734. [21] 周晨,徐飞翔. 四轮独立转向车辆转向模式切换轨迹多目标优化方法研究[J]. 机械工程学报, 2024, 60(6): 306-320. ZHOU Chen, XU Feixiang. Multi-objective optimization method for steering mode switch trajectory of four-wheel independent steering vehicle[J]. Journal of Mechanical Engineering, 2024, 60(6): 306-320. [22] 秦洪懋,金英杰,杨泽宇,等. 融合模式决策的4WIS车辆路径规划方法[J]. 湖南大学学报(自然科学版), 2024, 51(8): 176-184. QIN Hongmao, JING Yingjie, YANG Zeyu, et al. Path planning method integrated with mode decision for 4WIS vehicles[J]. Journal of Hunan University(Natural Science), 2024, 51(8): 176-184. [23] CHANG Y, YANG Z, HU M, et al. An optimal parking path planning method integrating motion mode decision-making for 4WIS vehicles[C] //2024 IEEE 27th International Conference on Intelligent Transportation Systems (ITSC). 2024: 2570-2577. [24] CHU Y, ZHAO W, ZHOU X, et al. Multi-mode trajectory planning for four-wheel independent steering vehicles under emergency obstacle avoidance scenarios[J]. IEEE Transactions on Intelligent Transportation Systems, 2025, 26(10): 14735-14749. [25] ZHANG L, ZHANG T, AN Y, et al. 4WIDS-MAPF: Multi-agent pathfinding for four-wheel independent drive/steering robots[J]. IEEE Internet of Things Journal, 2025, 12(18): 38795-38803. [26] PAN J, CHITTA S, MANOCHA D. FCL: A general purpose library for collision and proximity queries[C] //2012 IEEE International Conference on Robotics and Automation. 2012: 3859-3866. [27] ZHENG H, MA X, KONG W. A fast and accurate collision detection method during automated valet parking for autonomous vehicle in narrow space[C] //2023 IEEE 26th International Conference on Intelligent Transportation Systems (ITSC). 2023: 1128-1133. [28] LI B, SHAO Z. A unified motion planning method for parking an autonomous vehicle in the presence of irregularly placed obstacles[J]. Knowledge-Based Systems, 2015, 86: 11-20. [29] SU S, JU X, XU C, et al. Collaborative motion planning based on the improved ant colony algorithm for multiple autonomous vehicles[J]. IEEE Transactions on Intelligent Transportation Systems, 2024, 25(3): 2792-2802. [30] LI B, OUYANG Y, LI L, et al. Autonomous driving on curvy roads without reliance on frenet frame : A cartesian-based trajectory planning method[J]. IEEE Transactions on Intelligent Transportation Systems, 2022, 23(9): 15729-15741. [31] 陈特,蔡英凤,陈龙,等. 基于四阶贝塞尔曲线的应急救援车辆轨迹规划方法[J]. 机械工程学报, 2025, 61(2): 198-209. CHEN Te, CAI Yingfeng, CHEN Long, et al. Trajectory planning method of emergency rescue vehicle based on fourth-order Bezier curve[J]. Journal of Mechanical Engineering, 2025, 61(2): 198-209. [32] 贺宜,杜宇豪,吴钪,等. 基于层次迭代搜索的自动驾驶重载半挂牵引车轨迹规划方法[J]. 机械工程学报, 2025, 61(10): 335-348. HE Yi, DU Yuhao, WU Kang, et al. Hierarchical iterative search-based trajectory planning method for self-driving heavy-duty semi-trailer tractors[J]. Journal of Mechanical Engineering, 2025, 61(10): 335-348. [33] YANG L, WANG Q, TAN Y, et al. Autonomous vehicle path planning considering dwarf or negative obstacles[C] //2019 IEEE Intelligent Vehicles Symposium (IV). 2019: 1021-1026. [34] 杨秀建,白永瑞. 基于图搜索与优化的动态非结构环境智 能车 辆轨 迹规 划[J]. 汽车 工程 , 2024, 46(9) : 1564-1575. YANG Xiujian, BAI Yongrui. Trajectory planning for intelligent vehicle in dynamic unstructured environment based on the graph search and optimization methods[J]. Automotive Engineering, 2024, 46(9): 1564-1575. [35] 刘远志,王松,唐辰,等. 自主泊车轨迹规划技术发展现状综述[J]. 汽车工程学报, 2024, 14(3): 321-335. LIU Yuanzhi, WANG Song, TANG Chen, et al. Review on the development status of autonomous parking trajectory planning technology[J]. Automotive Engineering, 2024, 14(3): 321-335. [36] LI B, YIN Z, OUYANG Y, et al. Online trajectory replanning for sudden environmental changes during automated parking: A parallel stitching method[J]. IEEE Transactions on Intelligent Vehicles, 2022, 7(3): 748-757. [37] JANG C, KIM C, LEE S, et al. Re-plannable automated parking system with a standalone around view monitor for narrow parking lots[J]. IEEE Transactions on Intelligent Transportation Systems, 2020, 21(2): 777-790. [38] ZIEGLER J, BENDER P, DANG T, et al. Trajectory planning for Bertha—A local, continuous method[C] // 2014 IEEE Intelligent Vehicles Symposium Proceedings. 2014: 450-457. [39] LIU T, NIU Y, JIA S, et al. Real-time trajectory replanning for micro-UAVs in cluttered environments with dynamic obstacles[C] //20203rd International Conference on Unmanned Systems (ICUS). 2020: 797-801. [40] LIU D, XU D, WANG N, et al. Dynamic replanning algorithm of local trajectory for unmanned surface vehicle[C] //201635th Chinese Control Conference (CCC). 2016: 7120-7125. [41] KARAMAN S, FRAZZOLI E. Sampling-based algorithms for optimal motion planning[J]. The International Journal of Robotics Research, 2011, 30(7): 846-894. [42] UWACU D, YAMMANURU A, NALLAMOTU K, et al. HAS-RRT: RRT-based motion planning using topological guidance[J]. IEEE Robotics and Automation Letters, 2025, 10(6): 6223-6230. [43] TAO Z, LI J, ZHANG S. Trajectory planning for aircraft in complex no-fly zones based on hybrid A* algorithm[C] //20243rd International Symposium on Aerospace Engineering and Systems (ISAES). IEEE, 2024: 218-225.