[1] 仲建华,杜子学,何希和.跨座式单轨交通车辆道岔结构及分析[M].北京:人民交通出版社,2013:280-293.
ZHONG Jianhua, DU Zixue, HE Xihe. Structure and Analysis of Switch for Straddle Type Monorail Vehicle[M] . Beijing: China Communications Press, 2013: 280-293.
[2] 孙静.单轴转向架跨坐式单轨主要线路技术条件[J].城市轨道交通研究,2018,21(7):70-73.
SUN Jing. Major track technical conditions for straddle monorail with single axle vehiclebogie[J]. Urban Mass Transit, 2018, 21(7): 70-73.
[3] 夏赞鸥.庞巴迪单轨关键技术的改进与革新[J].现代城市轨道交通,2016(2):96-99.
XIA Zanou. Improvement and innovation of bombardier monorail technology[J]. Modern Urban Transit, 2016(2): 96-99.
[4] GODA K, NISHIGAITO T, HIRAISHI M, et al. Improving curving performance for articulated-type small monorail car[J].Transactions of the Japan Society of Mechanical Engineers C, 2002, 68: 2410-2417.
[5] LEE C H, KAWATANI M, KIM C W, et al. Dynamic response of a monorail steel bridge under a moving train[J].Journal of Sound and Vibration, 2006, 294(3): 562- 579.
[6] 赵树恩,罗宝良,李玉玲.考虑轮胎非线性特性的单轨车辆平稳性研究[J].重庆交通大学学报(自然科学版),2018,37(8):119-126.
ZHAO Shuen, LUO Baoliang, LI Yuling. Stability of monorail vehicle considering tire nonlinear characteristics[J]. Journal of Chongqing Jiaotong University(Natural Science), 2018, 37(8): 119-126.
[7] 李军,魏睿,隗寒冰,等.横风激扰下的跨座式单轨车辆运行平稳性分析[J].华侨大学学报(自然科学版),2020,41(3):285-291.
LI Jun, WEI Rui, WEI Hanbi, et al. Stability analysis of straddle monorail vehicle under crosswind disturbance[J]. Journal of Huaqiao University(Natural Science), 2020, 41 (3): 285-291.
[8] 杜子学,唐飞,何钦洪,等.走行轮失效对跨座式单轨车辆动力学性能的影响分析[J].重庆交通大学学报(自然科学版),2018,37(9):122-127.
DU Zixue, TANG Fei, HE Qinghong, et al. Effect of walking wheel failure on dynamics performance of straddle-type monorail vehicle[J]. Journal of Chongqing Jiaotong University(Natural Science), 2018, 37(9): 122-127.
[9] 杜子学,何钦洪.稳定轮失效对跨坐式单轨车辆运行安全性及舒适性的影响[J].城市轨道交通研究,2018,21(3):15-18.
DU Zixue, HE Qinhong. Impact of steady wheel failure on operational safety and comfort of straddle-type monorail vehicle[J]. Urban Mass Transit, 2018, 21(3): 15-18.
[10] 杜子学,曹丹婷.跨座式单轨车辆空气弹簧失效对行车安全性能的影响研究[J].机车电传动,2016(5):76-80.
DU Zixue, CAO Danting. Influence of air spring failure on operation safety for straddle-type monorail vehicle[J]. Electric Drive for Locomotives, 2016(5): 76-80.
[11] 来飞,胡博.汽车主动悬架技术的研究现状[J].南京理工大学学报,2019,43(4):518-526.
LAI Fei, HU Bo. Research status of automotive active suspension technology[J]. Journal of Nanjing University of Science and Technology, 2019, 43(4): 518-526.
[12] CROSBY M J, KARNOPP D C. The active damper:A new concept for shock and vibration control[J]. Shock & Vibration Bulletin, 1973: 1-59.
[13] ANG K H, CHONG G, LI Y. PID control system analysis, design, and technology[J].IEEE Transactions on Control Systems Technology, 2005, 13(4): 559-576.
[14] YOSHIMURA T. Active suspension of vehicle using fuzzylogic[J]. International Journal of System Science, 1996, 27(2): 215-219.
[15] GULEZA K, GUCLU R. CBA-neural network control of a non-linear full vehiclemodel[J]. Simulation Modelling Practice and Theory, 2008, 16(9): 1163-1176.
[16] THOMSON W T.Theory of Vibration with Applications[M]. Upper Saddle River, U. S. A.: Prentice Hall, 1988: 196-198.
[17] BAO Yulong, LI Yongle, DING Jiajie. A case study of dynamic response analysis and safety assessment for a suspended monorail system[J]. International Journal of Environmental Research and Public Health, 2016, 13(11): 1121.
[18] 文孝霞.跨座式单轨车辆走行轮轮胎偏磨机理及控制方法研究[D].重庆:重庆交通大学,2018.
WEN Xiaoxia. Research on the Mechanism and Control Method of Running Wheel Partial Wear of Straddle-Type Monorail Vehicle[D]. Chongqing: Chongqing Jiaotong University, 2018.
[19] 刘金琨.智能控制[M].3版.北京:电子工业出版社,2014:290-296.
LIU Jinkun. Intelligent Control[M]. 3rd ed. Beijing: Electronic Industry Press, 2014: 290-296. |