J Shanghai Jiaotong Univ Sci ›› 2021, Vol. 26 ›› Issue (5): 634-646.doi: 10.1007/s12204-021-2353-x
收稿日期:
2020-11-30
出版日期:
2021-10-28
发布日期:
2021-10-28
通讯作者:
CUI Ke1 (崔 科), E-mail: cuike@casco.com.cn
WANG Weiyang1,2 (王维旸), CUI Ke1 (崔 科), GU Lizhong1 (顾立忠), LU¨ Xinjun1 (吕新军)
Received:
2020-11-30
Online:
2021-10-28
Published:
2021-10-28
中图分类号:
. [J]. J Shanghai Jiaotong Univ Sci, 2021, 26(5): 634-646.
WANG Weiyang (王维旸), CUI Ke (崔 科), GU Lizhong(顾立忠), LU¨ Xinjun (吕新军). Cooperative Adaptive Cruise Control Using Delay-Based Spacing Policy: A Robust Adaptive Non-Singular Terminal Sliding Mode Approach[J]. J Shanghai Jiaotong Univ Sci, 2021, 26(5): 634-646.
[1] | ALAM A, BESSELINK B, TURRI V, et al. Heavy-duty vehicle platooning for sustainable freight trans-portation: A cooperative method to enhance safety and e?ciency [J]. IEEE Control Systems Magazine, 2015, 35(6): 34-56. |
[2] | SHLADOVER S E, NOWAKOWSKI C, LU X Y, et al. Cooperative adaptive cruise control: De?nitions and operating concepts [J]. Transportation Research Record: Journal of the Transportation Research Board, 2015, 2489(1): 145-152. |
[3] | WANG Z, BIAN Y, SHLADOVER S E, et al. A survey on cooperative longitudinal motion control of multiple connected and automated vehicles [J]. IEEE Intelligent Transportation Systems Magazine, 2020, 12(1): 4-24. |
[4] | RAJAMANI R, ZHU C. Semi-autonomous adaptive cruise control systems [J]. IEEE Transactions on Vehicular Technology, 2002, 51(5): 1186-1192. |
[5] | BAROOAH P, HESPANHA J P. Error ampli?cation and disturbance propagation in vehicle strings with de-centralized linear control [C]//Proceedings of the 44th IEEE Conference on Decision and Control. Seville: IEEE, 2005: 4964-4969. |
[6] | BESSELINK B, JOHANSSON K H. String stability and a delay-based spacing policy for vehicle platoons subject to disturbances [J]. IEEE Transactions on Au-tomatic Control, 2017, 62(9): 4376-4391. |
[7] | NAUS G J L, VUGTS R P A, PLOEG J, et al. String-stable CACC design and experimental validation: A frequency-domain approach [J]. IEEE Transactions on Vehicular Technology, 2010, 59(9): 4268-4279. |
[8] | PLOEG J, SCHEEPERS B T M, VAN NUNEN E, et al. Design and experimental evaluation of coopera-tive adaptive cruise control [C]// 2011 14th Interna-tional IEEE Conference on Intelligent Transportation Systems (ITSC ). Washington, DC: IEEE, 2011: 260-265. |
[9] | GONG J, CAO J, ZHAO Y, et al. Sampling-based co-operative adaptive cruise control subject to communi-cation delays and actuator lags [J]. Mathematics and Computers in Simulation, 2020, 171: 13-25. |
[10] | ZHANG Y, BAI Y, WANG M, et al. Cooperative adap-tive cruise control with robustness against communi-cation delay: An approach in the space domain [J]. IEEE Transactions on Intelligent Transportation Sys-tems, 2021, 22(9): 5496-5507. |
[11] | KWON J, CHWA D. Adaptive bidirectional platoon control using a coupled sliding mode control method [J]. IEEE Transactions on Intelligent Transportation Systems, 2014, 15(5): 2040-2048. |
[12] | WU Y, LI S E, ZHENG Y, et al. Distributed sliding mode control for multi-vehicle systems with positive de?nite topologies [C]//2016 IEEE 55th Conference on Decision and Control (CDC ). Las Vegas, NV: IEEE,2016:5213-5219. [13] YAN M, SONG J, YANG P, et al. Distributed adaptive sliding mode control for vehicle platoon with uncer-tain driving resistance [C]// 2017 36th Chinese Control Conference (CCC ). Dalian: IEEE, 2017: 9396-9400. |
[14] | GUO G, LI D. Adaptive sliding mode control of ve-hicular platoons with prescribed tracking performance [J]. IEEE Transactions on Vehicular Technology, 2019, 68(8): 7511-7520. |
[15] | AGHABABA M P, SAIF M. Finite time sliding mode control of connected vehicle platoons guaranteeing string stability [C]//2020 IEEE International Confer-ence on Human-Machine Systems (ICHMS ). Rome: IEEE, 2020: 1-6. |
[16] | KIANFAR R, FALCONE P, FREDRIKSSON J. A re-ceding horizon approach to string stable cooperative adaptive cruise control [C]//2011 14th International IEEE Conference on Intelligent Transportation Sys-tems (ITSC ). Washington, DC: IEEE, 2011: 734-739. |
[17] | ZHENG Y, LI S E, LI K, et al. Distributed model predictive control for heterogeneous vehicle platoons under unidirectional topologies [J]. IEEE Transactions on Control Systems Technology, 2017, 25(3): 899-910. |
[18] | PLOEG J, SHUKLA D P, VAN DE WOUW N, et al. Controller synthesis for string stability of vehicle platoons [J]. IEEE Transactions on Intelligent Trans-portation Systems, 2014, 15(2): 854-865. |
[19] | PLOEG J, VAN DE WOUW N, NIJMEIJER H. Fault tolerance of cooperative vehicle platoons subject to communication delay [J]. IFAC-PapersOnLine, 2015, 48(12): 352-357. |
[20] | GAO F, LI S E, ZHENG Y, et al. Robust control of het-erogeneous vehicular platoon with uncertain dynamics and communication delay [J]. IET Intelligent Trans-port Systems, 2016, 10(7): 503-513. |
[21] | DESJARDINS C, CHAIB-DRAA B. Cooperative adaptive cruise control: A reinforcement learning ap-proach [J]. IEEE Transactions on Intelligent Trans-portation Systems, 2011, 12(4): 1248-1260. |
[22] | GUO G, LI D. PMP-based set-point optimization and sliding-mode control of vehicular platoons [J]. IEEE Transactions on Computational Social Systems, 2018, 5(2): 553-562. |
[23] | FESHARAKI S J, KAMALI M, SHEIKHOLESLAM F, et al. Robust model predictive control with sliding mode for constrained non-linear systems [J]. IET Con-trol Theory & Applications, 2020, 14(17): 2592-2599. |
[24] | GUO X, WANG J, LIAO F, et al. CNN-based dis-tributed adaptive control for vehicle-following platoon with input saturation [J]. IEEE Transactions on In-telligent Transportation Systems, 2018, 19(10): 3121-3132. |
[25] | FENG Y, YU X, MAN Z. Non-singular terminal slid-ing mode control of rigid manipulators [J]. Automatica, 2002,38(12):2159-2167. |
No related articles found! |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||