Journal of Guangxi Normal University(Natural Science Edition) ›› 2024, Vol. 42 ›› Issue (6): 67-80.doi: 10.16088/j.issn.1001-6600.2023120802
Previous Articles Next Articles
TIAN Sheng*, CHEN Dong
| [1] 陈晓龙,焦晓红.网联混合动力汽车跟驰场景的预测能量管理控制[J].燕山大学学报,2023,47(1):43-53.DOI: 10.3969/j.issn.1007-791X.2023.01.005. [2] 陈峥,张玉果,沈世全,等.城市郊区道路跟车条件下智能网联汽车速度规划[J].中国公路学报,2023,36(6):298-310.DOI: 10.19721/j.cnki.1001-7372.2023.06.023. [3] LV Z H, LOU R R, SINGH A K. AI empowered communication systems for intelligent transportation systems[J]. IEEE Transactions on Intelligent Transportation Systems, 2021, 22(7): 4579-4587. DOI: 10.1109/TITS.2020.3017183. [4] 魏小栋,孙超,刘波,等.燃料电池汽车车速与能量联合优化[J].机械工程学报,2023,59(8):204-212.DOI: 10.3901/JME.2023.08.204. [5] 周健豪,顾诚,刘军,等.基于IGWO的燃料电池汽车模糊控制能量管理策略[J].重庆理工大学学报(自然科学版),2021,35(5):33-41.DOI: 10.3969/j.issn.1674-8425(z).2021.05.005. [6] 于瀛霄,孙闫,夏长高,等.燃料电池汽车双层模糊控制能量管理策略[J].重庆理工大学学报(自然科学版),2022,36(8):21-28.DOI: 10.3969/j.issn.1674-8425(z).2022.08.003. [7] ZOU W T, LI J W, YANG Q Q, et al. An improved max-min game theory control of fuel cell and battery hybrid energy system against system uncertainty[J]. IEEE Journal of Emerging and Selected Topics in Power Electronics, 2023, 11(1): 78-87. DOI: 10.1109/JESTPE.2022.3168374. [8] 赵天宇,陈东,霍为炜,等.氢燃料电池汽车能量管理系统模糊控制仿真研究[J].重庆理工大学学报(自然科学版),2022,36(3):36-40.DOI: 10.3969/j.issn.1674-8425(z).2022.03.005. [9] 王春生,张佳男,王吉全.基于驾驶工况辨识的插电式混合动力汽车保电能量管理策略[J].汽车工程学报,2023,13(4):539-547. [10] 周晓华,朱佳龙,冯雨辰.基于双启发式动态规划的PHEV能量管理策略[J].工业仪表与自动化装置,2023(3):99-105,133.DOI: 10.19950/j.cnki.cn61-1121/th.2023.03.020. [11] SONG Z Y, HOFMANN H, LI J Q, et al. Energy management strategies comparison for electric vehicles with hybrid energy storage system[J]. Applied Energy, 2014, 134: 321-331. DOI: 10.1016/j.apenergy.2014.08.035. [12] 杜常清,陈磊,杨贤诚,等.混合动力重卡自适应等效燃油消耗最小化能量管理策略[J].内燃机工程,2023,44(1):1-8.DOI: 10.13949/j.cnki.nrjgc.2023.01.001. [13] SUN C, SUN F C, HE H W. Investigating adaptive-ECMS with velocity forecast ability for hybrid electric vehicles[J]. Applied Energy, 2017, 185(Part 2): 1644-1653. DOI: 10.1016/j.apenergy.2016.02.026. [14] 付主木,龚慧贤,宋书中,等.燃料电池电动汽车改进深度强化学习能量管理[J].河南科技大学学报(自然科学版),2023,44(4):41-48.DOI: 10.15926/j.cnki.issn1672-6871.2023.04.006. [15] 李家曦,孙友长,庞玉涵,等.基于并行深度强化学习的混合动力汽车能量管理策略优化[J].重庆理工大学学报(自然科学版),2020,34(9):62-72.DOI: 10.3969/j.issn.1674-8425(z).2020.09.007. [16] CHEN Z, MI C C, XU J, et al. Energy management for a power-split plug-in hybrid electric vehicle based on dynamic programming and neural networks[J]. IEEE Transactions on Vehicular Technology, 2014, 63(4): 1567-1580. DOI: 10.1109/TVT.2013.2287102. [17] TANG X L, ZHOU H T, WANG F, et al. Longevity-conscious energy management strategy of fuel cell hybrid electric vehicle based on deep reinforcement learning[J]. Energy, 2022, 238(Part A): 121593. DOI: 10.1016/j.energy.2021.121593. [18] ZHANG Q, JU F, ZHANG S M, et al. Power management for hybrid energy storage system of electric vehicles considering inaccurate terrain information[J]. IEEE Transactions on Automation Science and Engineering, 2017, 14(2): 608-618. DOI: 10.1109/TASE.2016.2645780. [19] YANG Y, SU L, QIN D T, et al. Energy management strategy for hybrid electric vehicle based on system efficiency and battery life optimization[J]. Wuhan University Journal of Natural Sciences, 2014, 19(3): 269-276. DOI: 10.1007/s11859-014-1012-6. [20] EBBESEN S, ELBERT P, GUZZELLA L. Battery state-of-health perceptive energy management for hybrid electric vehicles[J]. IEEE Transactions on Vehicular Technology, 2012, 61(7): 2893-2900. DOI: 10.1109/TVT.2012.2203836. [21] DU R H, HU X S, XIE S B, et al. Battery aging- and temperature-aware predictive energy management for hybrid electric vehicles[J]. Journal of Power Sources, 2020, 473: 228568. DOI: 10.1016/j.jpowsour.2020.228568. [22] BAI Z W, HAO P, SHANGGUAN W, et al. Hybrid reinforcement learning-based eco-driving strategy for connected and automated vehicles at signalized intersections[J]. IEEE Transactions on Intelligent Transportation Systems, 2022, 23(9): 15850-15863. DOI: 10.1109/TITS.2022.3145798. [23] WANG Q Z, GONG Y B, YANG X F. Connected automated vehicle trajectory optimization along signalized arterial: A decentralized approach under mixed traffic environment[J]. Transportation Research Part C: Emerging Technologies, 2022, 145: 103918. DOI: 10.1016/j.trc.2022.103918. [24] 庄伟超,丁昊楠,董昊轩,等.信号交叉口网联电动汽车自适应学习生态驾驶策略[J].吉林大学学报(工学版),2023,53(1):82-93.DOI: 10.13229/j.cnki.jdxbgxb20210598. [25] WANG Z R, WU G Y, BARTH M J. Cooperative eco-driving at signalized intersections in a partially connected and automated vehicle environment[J]. IEEE Transactions on Intelligent Transportation Systems, 2020, 21(11): 2029-2038. DOI: 10.1109/TITS.2019.2911607. [26] 王金鑫,刘显贵,李运富,等.网联环境下连续交叉口车速引导及优化[J].厦门理工学院学报,2023,31(1):9-16.DOI: 10.19697/j.cnki.1673-4432.202301002. [27] 杨超,杜雪龙,王伟达,等.智能网联环境下的PHEV实时优化能量管理策略法[J].汽车安全与节能学报,2021,12(2):210-218.DOI: 10.3969/j.issn.1674-8484.2021.01.009. [28] 张扬,梁栋,张鹏飞,等.网联环境下混合动力汽车分层能量管理策略[J].重庆理工大学学报,2023,37(1):47-55.DOI: 10.3969/j.issn.1674-8425(z).2023.01.006. [29] LIU Y G, HUANG Z Z, LI J, et al. Cooperative optimization of velocity planning and energy management for connected plug-in hybrid electric vehicles[J]. Applied Mathematical Modelling, 2021, 95: 715-733. DOI: 10.1016/j.apm.2021.02.033. [30] LIU B, SUN C, WANG B, et al. Bi-level convex optimization of eco-driving for connected Fuel Cell Hybrid Electric Vehicles through signalized intersections[J]. Energy, 2022, 252: 123956. DOI: 10.1016/j.energy.2022.123956. [31] DONG H X, ZHUANG W C, CHEN B L, et al. Predictive energy-efficient driving strategy design of connected electric vehicle among multiple signalized intersections[J]. Transportation Research Part C: Emerging Technologies, 2022, 137: 103595. DOI: 10.1016/j.trc.2022.103595. [32] PANDE S S, NEERAJA B, KUMAR K K, et al. Off-policy reinforcement based on a safe model eco-driving education for fully-automated, connected hybrid vehicles[C] // 2023 Second International Conference on Electronics and Renewable Systems (ICEARS), Piscataway,NJ: IEEE, 2023: 10-95. DOI: 10.1109/ICEARS56392.2023.10085149. |
| [1] | CHEN Xiufeng, WANG Chengxin, ZHAO Fengyang, YANG Kai, GU Kexin. A Single Intersection Signal Control Method Based on Improved DQN Algorithm [J]. Journal of Guangxi Normal University(Natural Science Edition), 2024, 42(6): 81-88. |
| [2] | TANG Fengzhu, TANG Xin, LI Chunhai, LI Xiaohuan. Dynamic Task Allocation Method for UAVs Based on Deep Reinforcement Learning [J]. Journal of Guangxi Normal University(Natural Science Edition), 2021, 39(6): 63-71. |
| [3] | ZHAO Dongjiang, MA Songyan, TIAN Xiqiang. Applications of CoSe2/C Catalyst in Electrocatalytic Oxygen Reduction [J]. Journal of Guangxi Normal University(Natural Science Edition), 2021, 39(5): 30-43. |
|