[ 1 ] 孙志军.我国汽车行业高新技术产业化研究[D].天 津:天津大学,2007.
[ 2 ] 柳明.城市行驶环境中智能汽车的行为决策规划与 运动控制[D].西安:西安理工大学,2018.
[ 3 ] 崔佳超.无人驾驶智能车在动态环境中的避障方法
[D].西安:西安工业大学,2015.
[ 4 ] 王俊.无人驾驶车辆环境感知系统关键技术研究[D].
合肥:中国科学技术大学,2016.
[ 5 ] BLANCO J L, BELLONE M, GIMENEZ-FERNANDEZ A. TP-space RRT–kinematic Path Planning of
Non-holonomic Any-shape Vehicles[J]. International
Journal of Advanced Robotic Systems,2015,12(5):55.
[ 6 ] 王峰博,崔先国,丁琳,等.基于 Dijkstra 算法驾车导航 路径研究与实现[J].中国西部科技,2011,10(34):26-
28.
[ 7 ] 张煜.基于多传感器数据融合的无人车避障导航研 究[D].西安:西安工业大学,2015.
[ 8 ] 李欣,朱大奇.基于人工势场法的自治水下机器人路 径规划[J].上海海事大学学报,2010,31(2):35-39.
[ 9 ] 罗乾又,张华,王姮,等.改进人工势场法在机器人路 径规划中的应用[J].计算机工程与设计,2011,32 (4):
1411-1413,1418.
[10] 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.
[11] 陈成,何玉庆,卜春光,等.基于四阶贝塞尔曲线的无人
车可行轨迹规划[J].自动化学报,2015,41(3):486-496.
[12] 杜明博,梅涛,陈佳佳,等.复杂环境下基于 RRT 的智
能车辆运动规划算法[J].机器人,2015,37(4):443-450.
[13] 冯来春.基于引导域的参数化 RRT 无人驾驶车辆运 动规划算法研究[D].合肥:中国科学技术大学,2017.
[14] 刘珏.基于逆强化学习的舰载机牵引车路径规划研 究[D].哈尔滨:哈尔滨工程大学,2017.
[15] 徐春玲.面向平行泊车场景的自动泊车控制策略研 究[D].北京:北方工业大学,2018.
[16] 姚君延.基于深度增强学习的路径规划算法研究[D].
成都:电子科技大学,2018.
[17] 王沙晶.基于 Frenet 坐标系采样的自动驾驶轨迹规
划算法研究[D].兰州:兰州理工大学,2019.
[18] WERLING M,ZIEGLER J,S?REN K,et al.Optimal
Trajectory Generation for Dynamic Street Scenarios in
a Frenét Frame[C]//2010 IEEE International Conference
on Robotics and Automation.Piscataway:IEEE,2010:
987-993.
[19] 赵福全,刘宗巍.中国发展智能汽车的战略价值与优 劣势分析[J].现代经济探讨,2016(4):49-53.
[20] PETROV P,NASHASHIBI F.Modeling and Nonlinear
Adaptive Control for Autonomous Vehicle Overtaking
[J].IEEE Transactions on Intelligent Transportation
Systems,2014,15(4):1643-1656.
[21] PIAZZI A,BIANCO C L,BERTOZZI M,et al.Quintic
g2-sp Lines for the Iterative Steering of Vision-based
Autonomous Vehicles[J].IEEE Transactions on Intelligent Transportation Systems,2002,3(1):27-36.
[22] NOUVE L.Maneuver-based Trajectory Planning for
Highly Autonomous Vehicles on Real Road with
Traffic and Driver Interaction [J].Intelligent Transportation Systems,2010,4(9):589-606.
[23] LEE J W, LITKOUHI B. A Unified Framework of the
Automated Lane Centering/Changing Control for
Motion Smoothness Adaptation[C]//2012 15th international IEEE Conference on Intelligent Transportation
Systems. Piscataway:IEEE,2012:282-287. |